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The present study addresses the problem whether negative priming (NP) is due to information processing in perception, recognition or selection. We argue that most NP studies confound priming and perceptual similarity of prime-probe episodes and implement a color-switch paradigm in order to resolve the issue. In a series of three identity negative priming experiments with verbal naming response, we determined when NP and positive priming (PP) occur during a trial. The first experiment assessed the impact of target color on priming effects. It consisted of two blocks, each with a different fixed target color. With respect to target color no differential priming effects were found. In Experiment 2 the target color was indicated by a cue for each trial. Here we resolved the confounding of perceptual similarity and priming condition. In trials with coinciding colors for prime and probe, we found priming effects similar to Experiment 1. However, trials with a target color switch showed such effects only in trials with role-reversal (distractor-to-target or target-to-distractor), whereas the positive priming (PP) effect in the target-repetition trials disappeared. Finally, Experiment 3 split trial processing into two phases by presenting the trial-wise color cue only after the stimulus objects had been recognized. We found recognition in every priming condition to be faster than in control trials. We were hence led to the conclusion that PP is strongly affected by perception, in contrast to NP which emerges during selection, i.e., the two effects cannot be explained by a single mechanism.
Background: The blood-brain barrier (BBB) represents an insurmountable obstacle for most drugs thus obstructing an effective treatment of many brain diseases. One solution for overcoming this barrier is a transport by binding of these drugs to surface-modified nanoparticles. Especially apolipoprotein E (ApoE) appears to play a major role in the nanoparticle-mediated drug transport across the BBB. However, at present the underlying mechanism is incompletely understood.
Methodology/Principal Findings: In this study, the uptake of the ApoE-modified nanoparticles into the brain capillary endothelial cells was investigated to differentiate between active and passive uptake mechanism by flow cytometry and confocal laser scanning microscopy. Furthermore, different in vitro co-incubation experiments were performed with competing ligands of the respective receptor.
Conclusions/Significance: This study confirms an active endocytotic uptake mechanism and shows the involvement of low density lipoprotein receptor family members, notably the low density lipoprotein receptor related protein, on the uptake of the ApoE-modified nanoparticles into the brain capillary endothelial cells. This knowledge of the uptake mechanism of ApoE-modified nanoparticles enables future developments to rationally create very specific and effective carriers to overcome the blood-brain barrier.
Few studies have looked at the potential of using diffusion tensor imaging (DTI) in conjunction with machine learning algorithms in order to automate the classification of healthy older subjects and subjects with mild cognitive impairment (MCI). Here we apply DTI to 40 healthy older subjects and 33 MCI subjects in order to derive values for multiple indices of diffusion within the white matter voxels of each subject. DTI measures were then used together with support vector machines (SVMs) to classify control and MCI subjects. Greater than 90% sensitivity and specificity was achieved using this method, demonstrating the potential of a joint DTI and SVM pipeline for fast, objective classification of healthy older and MCI subjects. Such tools may be useful for large scale drug trials in Alzheimer’s disease where the early identification of subjects with MCI is critical.
Place based frequency discrimination (tonotopy) is a fundamental property of the coiled mammalian cochlea. Sound vibrations mechanically conducted to the hearing organ manifest themselves into slow moving waves that travel along the length of the organ, also referred to as traveling waves. These traveling waves form the basis of the tonotopic frequency representation in the inner ear of mammals. However, so far, due to the secure housing of the inner ear, these waves only could be measured partially over small accessible regions of the inner ear in a living animal. Here, we demonstrate the existence of tonotopically ordered traveling waves covering most of the length of a miniature hearing organ in the leg of bushcrickets in vivo using laser Doppler vibrometery. The organ is only 1 mm long and its geometry allowed us to investigate almost the entire length with a wide range of stimuli (6 to 60 kHz). The tonotopic location of the traveling wave peak was exponentially related to stimulus frequency. The traveling wave propagated along the hearing organ from the distal (high frequency) to the proximal (low frequency) part of the leg, which is opposite to the propagation direction of incoming sound waves. In addition, we observed a non-linear compression of the velocity response to varying sound pressure levels. The waves are based on the delicate micromechanics of cellular structures different to those of mammals. Hence place based frequency discrimination by traveling waves is a physical phenomenon that presumably evolved in mammals and bushcrickets independently.
Introduction: Despite the excellent anti-inflammatory and immunosuppressive action of glucocorticoids (GCs), their use for the treatment of inflammatory bowel disease (IBD) still carries significant risks in terms of frequently occurring severe side effects, such as the impairment of intestinal tissue repair. The recently-introduced selective glucocorticoid receptor (GR) agonists (SEGRAs) offer anti-inflammatory action comparable to that of common GCs, but with a reduced side effect profile.
Methods: The in vitro effects of the non-steroidal SEGRAs Compound A (CpdA) and ZK216348, were investigated in intestinal epithelial cells and compared to those of Dexamethasone (Dex). GR translocation was shown by immunfluorescence and Western blot analysis. Trans-repressive effects were studied by means of NF-κB/p65 activity and IL-8 levels, trans-activation potency by reporter gene assay. Flow cytometry was used to assess apoptosis of cells exposed to SEGRAs. The effects on IEC-6 and HaCaT cell restitution were determined using an in vitro wound healing model, cell proliferation by BrdU assay. In addition, influences on the TGF-β- or EGF/ERK1/2/MAPK-pathway were evaluated by reporter gene assay, Western blot and qPCR analysis.
Results: Dex, CpdA and ZK216348 were found to be functional GR agonists. In terms of trans-repression, CpdA and ZK216348 effectively inhibited NF-κB activity and IL-8 secretion, but showed less trans-activation potency. Furthermore, unlike SEGRAs, Dex caused a dose-dependent inhibition of cell restitution with no effect on cell proliferation. These differences in epithelial restitution were TGF-β-independent but Dex inhibited the EGF/ERK1/2/MAPK-pathway important for intestinal epithelial wound healing by induction of MKP-1 and Annexin-1 which was not affected by CpdA or ZK216348.
Conclusion: Collectively, our results indicate that, while their anti-inflammatory activity is comparable to Dex, SEGRAs show fewer side effects with respect to wound healing. The fact that SEGRAs did not have a similar effect on cell restitution might be due to a different modulation of EGF/ERK1/2 MAPK signalling.
Ubiquitination now ranks with phosphorylation as one of the best-studied post-translational modifications of proteins with broad regulatory roles across all of biology. Ubiquitination usually involves the addition of ubiquitin chains to target protein molecules, and these may be of eight different types, seven of which involve the linkage of one of the seven internal lysine (K) residues in one ubiquitin molecule to the carboxy-terminal diglycine of the next. In the eighth, the so-called linear ubiquitin chains, the linkage is between the amino-terminal amino group of methionine on a ubiquitin that is conjugated with a target protein and the carboxy-terminal carboxy group of the incoming ubiquitin. Physiological roles are well established for K48-linked chains, which are essential for signaling proteasomal degradation of proteins, and for K63-linked chains, which play a part in recruitment of DNA repair enzymes, cell signaling and endocytosis. We focus here on linear ubiquitin chains, how they are assembled, and how three different avenues of research have indicated physiological roles for linear ubiquitination in innate and adaptive immunity and suppression of inflammation.
Ubiquitin ligases and beyond
(2012)
First paragraph (this article has no abstract): In a review published in 2004 [1] and that still repays reading today, Cecile Pickart traced the evolution of research on ubiquitination from its origins in the proteasomal degradation of proteins through the revelation that it has a central role in cell cycle regulation and the recognition of regulatory roles for ubiquitin in intracellular membrane transport, cell signalling, transcription, translation, and DNA repair.
Synaptic long-term potentiation (LTP) at spinal neurons directly communicating pain-specific inputs from the periphery to the brain has been proposed to serve as a trigger for pain hypersensitivity in pathological states. Previous studies have functionally implicated the NMDA receptor-NO pathway and the downstream second messenger, cGMP, in these processes. Because cGMP can broadly influence diverse ion-channels, kinases, and phosphodiesterases, pre- as well as post-synaptically, the precise identity of cGMP targets mediating spinal LTP, their mechanisms of action, and their locus in the spinal circuitry are still unclear. Here, we found that Protein Kinase G1 (PKG-I) localized presynaptically in nociceptor terminals plays an essential role in the expression of spinal LTP. Using the Cre-lox P system, we generated nociceptor-specific knockout mice lacking PKG-I specifically in presynaptic terminals of nociceptors in the spinal cord, but not in post-synaptic neurons or elsewhere (SNS-PKG-I−/− mice). Patch clamp recordings showed that activity-induced LTP at identified synapses between nociceptors and spinal neurons projecting to the periaqueductal grey (PAG) was completely abolished in SNS-PKG-I−/− mice, although basal synaptic transmission was not affected. Analyses of synaptic failure rates and paired-pulse ratios indicated a role for presynaptic PKG-I in regulating the probability of neurotransmitter release. Inositol 1,4,5-triphosphate receptor 1 and myosin light chain kinase were recruited as key phosphorylation targets of presynaptic PKG-I in nociceptive neurons. Finally, behavioural analyses in vivo showed marked defects in SNS-PKG-I−/− mice in several models of activity-induced nociceptive hypersensitivity, and pharmacological studies identified a clear contribution of PKG-I expressed in spinal terminals of nociceptors. Our results thus indicate that presynaptic mechanisms involving an increase in release probability from nociceptors are operational in the expression of synaptic LTP on spinal-PAG projection neurons and that PKG-I localized in presynaptic nociceptor terminals plays an essential role in this process to regulate pain sensitivity.
We investigate the decisions of listed firms to go private once again. We start by revealing that while a significant number of firms which go public is VC-backed, an overproportional share of these VC-backed firms go private later on (they stay on the exchange for an average of 8.5 years). We interpret this very robust pattern such that IPOs of VC-backed firms are to a large extent a temporary rather than a permanent feature of the corporate governance of these firms. We investigate various potential hypotheses why VCs actually seem to be able to bring marginal firms to the exchange by relating the going-private decisions to various characteristics of the IPO market as well as to VC characteristics. We find strong support for the certification ability of VCs: more experienced and reputable VCs are more able to bring marginal firms to public exchanges via an IPOs. These marginal firms backed-by more reputable and experienced VCs are more likely to go private later on. Hence, our analysis suggests that IPOs backed by experienced VCs are most likely to be a temporary rather than the final stage in the life of the portfolio firm. We find no support that reputable VCs underprice their IPO-exits more implying that they have no need to leave more money on the table to take the marginal firms public.
Diatoms contribute largely to the total primary production of the ecosphere and are key players in global biogeochemical cycles. Their chloroplasts are surrounded by four membranes owing to their secondary endosymbiotic origin. Their thylakoids are arranged into three parallel bands and differentiation of thylakoid membranes into grana or stroma is not observed. The fucoxanthin chlorophyll a/c binding proteins act as the light harvesting proteins and play a role in photoprotection during excess light as well. The diatom genome encodes three different families of antenna proteins. Family I are the classical light harvesting proteins called "Lhcf". Family II are the red algae related Lhca-R1/2 proteins called "Lhcr" and family III are the photoprotective LI818 related proteins called "Lhcx".
All known Fcps have a molecular weight in the range of 17-23 kDa. They are membrane proteins and have shorter loops and termini compared to LHCs of higher plants and are therefore extremely hydrophobic. This makes the isolation of single specific Fcps using routine protein purification techniques difficult.
The purification of a specific Fcp containing complex has not been achieved so far and until this is done several questions concerning light harvesting antenna systems of diatoms cannot be answered. For e.g. Which proteins interact specifically? Are various Fcps differently pigmented? Which pigments interact with each other and how? Which proteins contribute to photosystem specific antenna systems? Can pure Fcps be reconstituted into crystals like LHCII proteins? In order to answer these questions specific Fcp containing complexes have to be purified. ...
Untersuchung von Korrelationseffekten in der Doppelphotoemission von normal- und supraleitendem Blei
(2012)
Im Rahmen dieser Arbeit wurde für die erstmalige Untersuchung der Doppelphotoemission von supraleitenden Materialien eine neue Messapparatur aufgebaut. Mit ihr lassen sich auf eine neue Weise Korrelationseffekte zwischen zwei Elektronen untersuchen, denn beide werden für jedes Reaktionsereignis mit ihrem vollständigen Impulsvektor aufgezeichnet. Die Apparatur kann daher für einen direkten Nachweis der Cooperpaarung in Supraleitern verwendet werden. Dazu wurden ein speziell für diesen Zweck angepasstes Spektrometer, Vakuumsystem und Probenhalter konstruiert. Ein mehrfach verbessertes Vakuumsystem sorgte dafür, dass eine Bleioberfläche über einen Zeitraum von mindestens 15 Stunden nach einer Reinigung gemessen werden konnte. Das Spektrometer erlaubte die koinzidente Messung von Elektronen über einen großen Raumwinkelbereich mit ausschließlich elektrischen Feldern. Dadurch war es auch im supraleitenden Zustand möglich, die Trajektorien der Elektronen zu berechnen. Die Energieauflösung für jedes Elektron lag zwischen 1/30 und 1/50, je nach untersuchtem Emissionswinkel. Ein eigens entwickelter Probenhalter erlaubte es, eine nur von einer Seite thermisch abgeschirmte Probe auf eine Temperatur von 4,5 K zu kühlen. Die Experimente wurden an einer Beamline des Berliner Synchrotrons BESSY durchgeführt.
Von entscheidender Bedeutung für die Auswertung der Daten ist die Qualität der Pulserkennungsroutine. Sie bestimmt die Totzeit der Messapparatur, das heisst wie nahe zwei Elektronen zeitlich und räumlich beieinander liegen dürfen, um noch detektiert zu werden. Sie beeinflusst somit die Beobachtung erheblich. In den als digitalisierte Pulse aufgenommen Rohdaten besteht die Schwierigkeit darin, zwei übereinander liegende Signale als solche zu erkennen und die richtige Zeit beider Signale zu bestimmten. Dies wurde erheblich verbessert, indem ein in Vorabeiten simulierter Doppelpulsalgorithmus modifiziert und erstmalig verwendet wurde. In der Folge konnte die Totzeit deutlich verringert und daher bis zu 20% mehr Doppelereignisse gefunden werden. Darüber hinaus ließen sich Fehler bei der Zeiterkennung nahe aufeinander folgender Pulse korrigieren. Ein in diesem Zusammenhang entwickeltes Programm erzeugte durch die Addition von gemessenen Einzelpulsen künstliche Doppelereignisse mit beliebiger Abstandsverteilung und erlaubte so erstmals eine exakte Simulation der Detektortotzeit mit verschiedenen Pulserkennungsalgorithmen.
Neben den Koinzidenzereignissen wurden auch die Ergebnisse der gewöhnlichen Photoemission untersucht und mit Bandstrukturrechnungen verglichen. Aufgrund der Messmethode wurde keine Vorauswahl bezüglich des Emissionswinkels oder der kinetischen Energie getroffen. Die Ergebnisse der Fermiflächen stimmen innerhalb der erreichten Auflösung mit den theoretischen Vorhersagen überein. Ebenso konnten die Strukturen in den Parallelimpulsspektren der Elektronen, die aus lokalisierten Energieniveaus emittiert wurden, mit der Interferenz der ausgehenden Wellenfunktionen erklärt werden. Eine Simulation dieses Effekts lieferte trotz der vergleichsweise sehr niedrigen Elektronenenergien eine gute Übereinstimmung der wesentlichen Merkmale.
Es wurden Doppelphotoemissionspektren von Blei bei verschiedenen Photonenenergien im Bereich von 21,22 eV bis 40 aufgenommen. Dabei konnten verschiedene Emissionskanäle identifiziert werden. Das Korrelationsloch ist ein sehr grundlegender Effekt, der aufgrund der Coulombabstoßung und des Pauli-Prinzips auftritt und daher bei allen Metallen vorkommt. Betrachtet man das Korrelationsloch im Impulsraum, so führt es dazu, dass zwei gleichzeitig emittierte Elektronen keine ähnlichen Impulsvektoren besitzen dürfen. Durch die verbesserten Pulserkennungsalgorithmen war es möglich, das Korrelationsloch zu untersuchen und über einen weiten Energiebereich zu vermessen. Es zeigte sich wie erwartet als Verarmungszone in der Impulsverteilung eines Elektrons um den Impuls eines zweiten. Ein solcher Effekt ist mit einem einzelnen Detektor sehr schwer zu messen, da die Totzeit die gleiche Auswirkung auf die Spektren hat. Durch eine Simulation konnte ihr Einfluss in jedem Spektrum herausgefunden und so beide Effekte voneinander getrennt werden. Sie stehen damit für einen Vergleich mit einer noch zu entwickelnden theoretischen Vorhersage zur Verfügung.
Aufgrund der bei Blei sehr nahe an der Fermikante liegenden, lokalisierten Energieniveaus konnte der Augerzerfall aus dem Valenzband identifiziert und untersucht werden. Korrelationseffekte zwischen den beiden Elektronen spielten aufgrund des sehr breiten Valenzbandes wie erwartet eine untergeordnete Rolle. Dies ließ sich nachweisen, indem die Energieverteilung durch eine Selbstfaltung der Valenzbandzustandsdichte beschrieben wurde und die Winkelverteilung der Augerelektronen keine Beeinflussung durch die Emissionsrichtung der Photoelektronen zeigte. Beide Beobachtungen deuten auf einen vollständig unabhängigen Emissionsprozess der beiden Elektronen hin. Überraschenderweise zeigte sich aber eine Energieverschiebung des Photoelektrons, abhängig von der kinetischen Energie des Augerelektrons. Dieser in der Gasphase als Post-Collision-Interaction bekannte Effekt sollte aufgrund der schnellen Abschirmung der im Festkörper zurückbleibenden Löcher nicht auftauchen. Die Ursache für die Energieverschiebung ist noch unbekannt.
Für die Identifizierung der Emission von Cooperpaaren wurden Messungen oberhalb und unterhalb der Sprungtemperatur bei verschiedenen Photonenenergien zwischen 20 eV und 40 eV durchgeführt. Verschiedene Spektren wurde nach der Signatur des Prozesses untersucht. Aufgrund der geringen Statistik konnte er nicht identifiziert werden. Demnach konnte auch die theoretische Vorhersage nicht widerlegt werden. Da dieses Experiment aus technischer Sicht äußerst herausfordernd ist, war die Untersuchung von Blei, als einfach zu präparierendes Material mit hoher Sprungtemperatur, naheliegend. Es stellte sich jedoch durch die Auswertung heraus, dass es im Hinblick auf die untersuchte Fragestellung einen wesentlichen Nachteil besitzt. Die Hauptintensität befindet sich im Gegensatz zu Kupfer für alle hier verwendeten Photonenenergien bei niedrigen Elektronenenergien, so dass nur wenige Ereignisse in dem für die Cooperpaaremission interessanten Energiefenster liegen.
Introduction: Erectile dysfunction (ED) is common in men with systemic sclerosis (SSc) but the demographics, risk factors and treatment coverage for ED are not well known.
Method: This study was carried out prospectively in the multinational EULAR Scleroderma Trial and Research database by amending the electronic data-entry system with the International Index of Erectile Function-5 and items related to ED risk factors and treatment. Centres participating in this EULAR Scleroderma Trial and Research substudy were asked to recruit patients consecutively.
Results: Of the 130 men studied, only 23 (17.7%) had a normal International Index of Erectile Function-5 score. Thirty-eight per cent of all participants had severe ED (International Index of Erectile Function-5 score ≤ 7). Men with ED were significantly older than subjects without ED (54.8 years vs. 43.3 years, P < 0.001) and more frequently had simultaneous non-SSc-related risk factors such as alcohol consumption. In 82% of SSc patients, the onset of ED was after the manifestation of the first non-Raynaud's symptom (median delay 4.1 years). ED was associated with severe cutaneous, muscular or renal involvement of SSc, elevated pulmonary pressures and restrictive lung disease. ED was treated in only 27.8% of men. The most common treatment was sildenafil, whose efficacy is not established in ED of SSc patients.
Conclusions: Severe ED is a common and early problem in men with SSc. Physicians should address modifiable risk factors actively. More research into the pathophysiology, longitudinal development, treatment and psychosocial impact of ED is needed.
Background: In Emergency and Medical Admission Departments (EDs and MADs), prompt recognition and appropriate infection control management of patients with Highly Infectious Diseases (HIDs, e.g. Viral Hemorrhagic Fevers and SARS) are fundamental for avoiding nosocomial outbreaks.
Methods: The EuroNHID (European Network for Highly Infectious Diseases) project collected data from 41 EDs and MADs in 14 European countries, located in the same facility as a national/regional referral centre for HIDs, using specifically developed checklists, during on-site visits from February to November 2009.
Results: Isolation rooms were available in 34 facilities (82,9%): these rooms had anteroom in 19, dedicated entrance in 15, negative pressure in 17, and HEPA filtration of exhausting air in 12. Only 6 centres (14,6%) had isolation rooms with all characteristics. Personnel trained for the recognition of HIDs was available in 24 facilities; management protocols for HIDs were available in 35.
Conclusions: Preparedness level for the safe and appropriate management of HIDs is partially adequate in the surveyed EDs and MADs.
Background: Hepatitis C decreases health related quality of life (HRQL) which is further diminished by antiviral therapy. HRQL improves after successful treatment. This trial explores the course of and factors associated with HRQL in patients given individualized or standard treatment based on early treatment response (Ditto-study).
Methods: The Short Form (SF)-36 Health Survey was administered at baseline (n = 192) and 24 weeks after the end of therapy (n = 128).
Results: At baseline HRQL was influenced by age, participating center, severity of liver disease and income. Exploring the course of HRQL (scores at follow up minus baseline), only the dimension general health increased. In this dimension patients with a relapse or sustained response differed from non-responders. Men and women differed in the dimension bodily pain. Treatment schedule did not influence the course of HRQL.
Conclusions: Main determinants of HRQL were severity of liver disease, age, gender, participating center and response to treatment. Our results do not exclude a more profound negative impact of individualized treatment compared to standard, possibly caused by higher doses and extended treatment duration in the individualized group. Antiviral therapy might have a more intense and more prolonged negative impact on females.