Refine
Year of publication
Document Type
- Article (31483)
- Part of Periodical (11568)
- Book (8325)
- Doctoral Thesis (5736)
- Part of a Book (3969)
- Working Paper (3387)
- Review (2940)
- Contribution to a Periodical (2368)
- Preprint (2235)
- Report (1560)
Language
- German (42872)
- English (29728)
- French (1060)
- Portuguese (840)
- Spanish (309)
- Croatian (302)
- Multiple languages (263)
- Italian (198)
- mis (174)
- Turkish (168)
Has Fulltext
- yes (76238) (remove)
Keywords
- Deutsch (1076)
- Literatur (868)
- taxonomy (768)
- Deutschland (553)
- Rezension (511)
- new species (453)
- Rezeption (354)
- Frankfurt <Main> / Universität (341)
- Übersetzung (329)
- Geschichte (300)
Institute
- Medizin (7777)
- Präsidium (5215)
- Physik (4594)
- Extern (2738)
- Wirtschaftswissenschaften (2698)
- Gesellschaftswissenschaften (2374)
- Biowissenschaften (2198)
- Biochemie und Chemie (1978)
- Frankfurt Institute for Advanced Studies (FIAS) (1774)
- Center for Financial Studies (CFS) (1630)
This thesis investigates the structure of the translocase of the outer membrane (TOM) complex in mitochondria, focusing on the TOM holo complex through single-particle electron cryo-microscopy (cryoEM) complemented by mass spectrometry and computational structure prediction. Mitochondria, crucial for energy production in eukaryotic cells, import most of their proteins from the cytoplasm. These proteins enter through the TOM complex, which in its core form consists of a membrane-embedded homodimer of Tom40 pores, two Tom22 cytoplasmic receptors, and six small TOM stabilizing subunits (Tom7, Tom6, and Tom5). The holo complex includes two additional subunits, Tom70 and Tom20, whose stoichiometry and positioning are less understood due to their easy dissociation during isolation of the complex. CryoEM analysis revealed the high-resolution structure of the Neurospora crassa TOM core complex at 3.3 Å, containing all core subunits, and the presence of a central phospholipid causing the Tom40 dimer to tilt to 20°. Furthermore, a 4 Å resolution map indicated the binding of a precursor protein as it transitions through the translocation barrel. Finally, at 6-7 Å resolution, the structure of the TOM holo complex highlighted Tom20's flexibility as it interacts with the core complex, emphasizing its role in protein translocation. This work provides significant insights into the architecture and functioning of the TOM complex, contributing to the understanding of mitochondrial protein import mechanisms.
Mitochondria perform essential energetic, metabolic and signalling functions within the cell. To fulfil these, the integrity of the mitochondrial proteome has to be preserved. Therefore, each mitochondrial subcompartment harbours its own system for protein quality control. However, if the capacity of mitochondrial chaperones and proteases is overloaded, mitochondrial misfolding stress (MMS) occurs. Upon this stress condition, mitochondria communicate with the nucleus to increase the transcription of nuclear encoded mitochondrial chaperones and proteases. This proteotoxic stress pathway was termed the mitochondrial unfolded protein response (UPRmt) aiming at restoring protein homeostasis. Despite being discovered over 25 years ago, the signalling molecules released by stressed mitochondria as well as the corresponding receptor and transcription factor remain poorly understood. With this study, we aimed at characterising the underlying signalling events and mechanisms of how mitochondria react to misfolded proteins. First, we aimed to establish different methods to induce MMS that triggers the transcriptional induction of mitochondrial chaperones and proteases detected by quantitative polymerase chain reaction. We were able to induce UPRmt signalling by overexpression of an aggregation-prone protein and by knock-down or inhibition of mitochondrial protein quality control components. To study the signalling in a time-resolved manner, we focused on the usage of the mitochondrial HSP90 inhibitor GTPP and the mitochondrial LONP1 protease inhibitor CDDO.
Early time point RNA sequencing analysis of cells stressed with GTPP or CDDO revealed upregulated genes in response to oxidative stress. Indeed, measurements of mitochondrial superoxide with the fluorescent dye MitoSOX showed increased levels of reactive oxygen species (ROS) upon MMS induction. In contrast, there was no induction of mitochondrial chaperones and proteases when combining MMS with antioxidants. Compartment-specific targeting of the hydrogen peroxide sensor HyPer7 revealed increased ROS levels in the intermembrane space and matrix of mitochondria, followed by elevated ROS levels in the cytosol at later time points. The importance of cytosolic ROS for the signalling was supported by preventing UPRmt induction with an inhibitor blocking the outer mitochondrial membrane pore. Thus, ROS were identified as an essential UPRmt signal.
To understand which cytosolic factor is modified by ROS, redox proteomics was performed. Here, reversible changes on cysteine residues of the HSP40 co-chaperone DNAJA1 were observed upon MMS. Consequently, transcriptional induction of UPRmt genes was abolished by DNAJA1 knock-down. To understand the function of DNAJA1 during UPRmt signalling, quantitative interaction proteomics upon MMS revealed an increased binding to mitochondrial proteins and its interaction partner HSP70. Immunoprecipitation confirmed a ROS-dependent interaction between HSP40 and HSP70. Increased binding to mitochondrial proteins represented a cytosolic interaction of DNAJA1 with mitochondrial precursor proteins, whose accumulation was confirmed by western blot. Moreover, a fluorescent protein targeted to mitochondria accumulated in the cytosol during GTPP treatment, confirming a reduced import efficiency upon MMS. Preventing the accumulation of precursors by a translation inhibitor or depletion of a general mitochondrial transcription factor resulted in reduced UPRmt activation. Thus, DNAJA1 is essential for UPRmt signalling, since its oxidation by mitochondrial ROS and its enhanced recruitment to mitochondrial precursors allows the integration of both MMS-induced signals.
To link these findings to an increased transcription of mitochondrial chaperones and proteases, we screened for transcription factors accumulating in the nucleus upon MMS by cellular fractionation mass spectrometry. We demonstrated that specifically HSF1 accumulates in nuclei of cells stressed with GTPP or CDDO. Depletion of HSF1 by knock-down or knock-out resulted in the abrogation of the UPRmt-specific transcriptional response. HSF1 activation was visualised by nuclear accumulation on western blot, a process inhibited by ROS and precursor suppression. Moreover, DNAJA1 depletion prevented HSF1 activation. Ultimately, we proved by immunoprecipitation that the inhibitory interaction between HSF1 and HSP70 is reduced upon MMS.
Thus, we conclude that MMS increases mitochondrial ROS that are released into the cytosol. In addition, the import efficiency is reduced upon MMS, resulting in the accumulation of non-imported mitochondrial precursor proteins in the cytosol. Both signals are recognised via DNAJA1 oxidation and substrate binding. The concurrent recruitment of HSP70 to DNAJA1 results in the loss of the inhibitory HSP70-HSF1 interaction. Thus, active HSF1 can migrate to the nucleus to initiate transcription of mitochondrial chaperones and proteases. These findings are in accordance with observations in yeast, where mistargeted mitochondrial proteins activate cellular stress responses. Our results highlight a surprising interconnection and dependence of the mitochondrial and the cytosolic proteostasis network, in which the UPRmt is activated by a combination of two mitochondria-specific proteotoxic stress signals.
The measurement of the production of deuterons, tritons and 3He and their antiparticles in Pb-Pb collisions at √sNN = 5.02 TeV is presented in this article. The measurements are carried out at midrapidity (y|< 0.5) as a function of collision centrality using the ALICE detector. The pT-integrated yields, the coalescence parameters and the ratios to protons and antiprotons are reported and compared with nucleosynthesis models. The comparison of these results in different collision systems at different center-of-mass collision energies reveals a suppression of nucleus production in small systems. In the Statistical Hadronisation Model framework, this can be explained by a small correlation volume where the baryon number is conserved, as already shown in previous fluctuation analyses. However, a different size of the correlation volume is required to describe the proton yields in the same data sets. The coalescence model can describe this suppression by the fact that the wave functions of the nuclei are large and the fireball size starts to become comparable and even much smaller than the actual nucleus at low multiplicities.
The knowledge of the material budget with a high precision is fundamental for measurements of direct photon production using the photon conversion method due to its direct impact on the total systematic uncertainty. Moreover, it influences many aspects of the charged-particle reconstruction performance. In this article, two procedures to determine data-driven corrections to the material-budget description in ALICE simulation software are developed. One is based on the precise knowledge of the gas composition in the Time Projection Chamber. The other is based on the robustness of the ratio between the produced number of photons and charged particles, to a large extent due to the approximate isospin symmetry in the number of produced neutral and charged pions. Both methods are applied to ALICE data allowing for a reduction of the overall material budget systematic uncertainty from 4.5% down to 2.5%. Using these methods, a locally correct material budget is also achieved. The two proposed methods are generic and can be applied to any experiment in a similar fashion.
Ribosomes catalyze protein synthesis by cycling through various functional states. These states have been extensively characterized in vitro, yet their distribution in actively translating human cells remains elusive. Here, we optimized a cryo-electron tomography-based approach and resolved ribosome structures inside human cells with a local resolution of up to 2.5 angstroms. These structures revealed the distribution of functional states of the elongation cycle, a Z tRNA binding site and the dynamics of ribosome expansion segments. In addition, we visualized structures of Homoharringtonine, a drug for chronic myeloid leukemia treatment, within the active site of the ribosome and found that its binding reshaped the landscape of translation. Overall, our work demonstrates that structural dynamics and drug effects can be assessed at near-atomic detail within human cells.
The present paper is devoted to the description of three new species of the genus Acanthophorella Antić & Makarov, 2016 from Georgia, western Caucasus: A. devi Antić sp. nov. and A. valerii Antić sp. nov., both presumed troglobionts and each from a single cave, and the epigean A. aurita Antić sp. nov. The troglobiotic Acanthophorella barjadzei Antić & Makarov, 2016 is reported from two additional caves, with further descriptive notes given. Notes on the ecology and localities, and a distribution map for all six species of the genus are presented. A key is given to all members of the Flagellophorella complex. The relationships within the complex and the distribution and troglomorphism in the genus Acanthophorella are briefly discussed.
Three species of bees (Hymenoptera: Apidae, Colletidae) are newly recorded for Guatemala: Centris obscurior Michener, Centris vidua Mocsáry, and Zikanapis inbio (Michener, Engel and Ayala). We discuss aspects of their biology and circumstances of the collecting events and provide information on their presently known distribution.
ZooBank registration. urn:lsid:zoobank.org:pub:A19C3260-B215-4F61-AF9C-72D88DD06456
Taxonomic criteria alone are not sufficient to determine a linear sequence for the arrangement of collection specimens according to a preferred classification or the linear sequence according to which taxa are best discussed in articles or books. The choice of methodology to obtain a linear sequence of taxa in agreement with a hierarchical classification has been little studied and remains controversial. In this article, I offer an historical background, before examining properties, use and limits of possible listing criteria. The result of a linearization effort depends on arbitrary choices with respect to two aspects of the hierarchical classification we intend to linearize. One is the order to be followed in listing the immediately subordinate members of a given taxon, the other is the choice of the sets of taxa to be linearized according to tradition, alphabetic order or other criterion. The example presented here, related to the “orders” of Hexapoda, demonstrates the need to specify very clearly the extent and composition of the uncollapsed classification backbone retained in the linearization procedure.
Impact of pectin dietary supplementation on experimental food allergy via gut microbiota modulation
(2023)
In recent years, dietary fibers gained focus in regard of their immune-modulatory effects and the potentially beneficial effect on allergies. The dietary fiber and prebiotic pectin is able to promote growth and activity of beneficial bacteria and thereby induce modulation of different immune responses. However, structurally different types of pectin might promote different immune-modulatory responses and to date the optimal pectin type for induction of beneficial health effects is not identified. Furthermore, it is still unclear, whether pectins provide a beneficial effect on certain allergies, such as food allergy.
Having this in consideration, this study examined the immune-modulatory effects of structurally different pectins on naive as well as peach allergic mice. Furhtermore, the impact of dietary pectin supplementation on composition and diversity of the murine gut microbiota was determined.
This study showed that dietary pectin intervention was able to suppress allergy-related Th2 responses considering humoral and cellular immune responses. Only apple-derived high-methoxyl pectin revealed an impact on total IgA levels and affected the microbial richness. Furthermore, it is not known whether the effects observed with the two pectins are caused by modulations of the bacterial composition or induced at least partly by direct interaction with the immune cells. Further studies are required to fully understand the mechanisms underlying the immune-modulatory capacities of different pectins.
Finally, the obtained results generated evidence that dietary pectin intervention can beneficially modulate the immune response in healthy mice and – at least partially – suppress allergy-related immune responses in a model of food allergy, depending on the structural characteristics of the used pectin.
Wahrnehmung wurde zu Beginn des 20. Jahrhunderts bestimmt als "Organ unseres ursprünglichen Welt-Erlebens." Das ursprüngliche Welterleben war das des Flaneurs, der mit allen Sinnen Umwelt wahrnimmt, um sich zu situieren und aus dieser Verortung Sicherheit und Anderssein zu gewinnen; die Verortung war aber auch über die Individualebene hinaus von politischer, sozialer, ökonomischer und kultureller Bedeutung. Man greift nicht zu hoch, wenn der Vormärz als Zeitspanne betrachtet wird, in der eine vollere Realität in sehr spezifischer Weise greifbar wurde. Die Vielschichtigkeit der Vormärz-Welt war dabei eine konstanter Innovation, die eine Initiierung jener Selbstbilder bedeutete, die über das Wahrnehmen bestätigt wurden, das selbst ein anderes geworden war. Nicht mehr informierte Wahrnehmung über die tautologisch so genannten sozialen Tatsachen; sie schuf diese vielmehr um und damit neu - das Organ des Welterlebens wirkte hier auf die Welt ein und musste Erlebnisse nicht mehr erleiden. Die Erfahrung der Welt-Erlebnisse bestand auch darin, die Sinne als sinnenöffnend zu sehen, indem die theoretische Vorrangstellung des Informationsaspekts der Wahrnehmung zurücktrat und Indices von Engagement, Eingreifen und Emanzipation deutlich werden konnten. Dies bedeutete, eine Form des "Wirklichkeitskontakts" zu suchen, die bisher nicht bestanden hatte. War der Kontakt vorher so geschehen, dass die Sinne eine bestätigende Funktion den sozialen und politischen Valeurs gegenüber einnahmen, die bezogen auf Emanzipationsprozesse und deren Möglichkeit einer Schließung gleichkam, öffnete nun die Veränderung der Wahrnehmung neue Formen des Wirklichkeitskontakts. In diesem Kontakt war vor allem entscheidend, dass nun die Bedingungen der Wahrnehmung ersichtlich wurden, sich als veränderbar auswiesen und nicht mehr im umfassenden Konstrukt "Wahrnehmung" aufgingen.
Die klinische Pfade zielten in erster Linie darauf ab, die Aufenthaltsdauer zu verkürzen und unnötige Kosten zu sparen, während die Qualität der Pflege erhalten blieb oder verbessert wurde. Bei der laparoskopischen Cholezystektomie gibt es keine ausreichenden Beweise für einen Einfluss auf postoperative Komplikationen.
In dieser retrospektiven Studie wurde die logistische Regression verwendet, um einen Neigungswert zu berechnen, und nach dem Abgleich werden 296 Patienten in beiden Gruppen im Hinblick auf postoperative Komplikationen unter Verwendung des Clavien-Dindo-Klassifizierungssystems als primäres Ziel analysiert. Darüber hinaus wurden sekundäre Ziele wie Aufenthaltsdauer, Einhaltung und Abweichung vom klinischen Pfad in Bezug auf die Entlassung von Patienten analysiert. Das relative Risiko des primären Ergebnisses wurde berechnet und mit dem E-Wert als Ansatz für Sensitivitätstests verglichen.
Aufgrund des obligatorischen Teil der klinischen Pfad bei den Patienten betrug die Compliance 100 Prozent. In 16% der Fälle trat eine Abweichung vom Pfad in Bezug auf die geplante Entlassung des Patienten am zweiten Tag nach der Operation auf. Nach Anpassung um potenzielle Faktoren beträgt das relative Risiko beim Vergleich der Clavien-Dindo-Komplikationsbewertung 0 versus 1-4 ist 1,64 (95% CI 0,87; 3,11), was nicht signifikant unterschiedlich ist (p = 0,127).
Nach Matching beträgt die Verweildauer 3,69 Tage ohne bzw. 3,26 Tage mit dem klinischen Pfad.
Vergleich zu bereits implementierter strukturierter Standardoperationsverfahren kann ein klinischer Pfad postoperative Komplikationen nicht reduzieren.
Dennoch betrachten wir unseren klinischen Pfad als ein äußerst wertvolles Instrument für die interdisziplinäre Verwaltung des Krankenhausaufenthalts des Patienten unter der Aufsicht eines erfahrenen Chirurgen.
In natural environments, background noise can degrade the integrity of acoustic signals, posing a problem for animals that rely on their vocalizations for communication and navigation. A simple behavioral strategy to combat acoustic interference would be to restrict call emissions to periods of low-amplitude or no noise. Using audio playback and computational tools for the automated detection of over 2.5 million vocalizations from groups of freely vocalizing bats, we show that bats (Carollia perspicillata) can dynamically adapt the timing of their calls to avoid acoustic jamming in both predictably and unpredictably patterned noise. This study demonstrates that bats spontaneously seek out temporal windows of opportunity for vocalizing in acoustically crowded environments, providing a mechanism for efficient echolocation and communication in cluttered acoustic landscapes.
Long non-coding RNAs are a very versatile class of molecules that can have important roles in regulating a cells function, including regulating other genes on the transcriptional level. One of these mechanisms is that RNA can directly interact with DNA thereby recruiting additional components such as proteins to these sites via an RNA:dsDNA triplex formation. We genetically deleted the triplex forming sequence (FendrrBox) from the lncRNA Fendrr in mice and found that this FendrrBox is partially required for Fendrr function in vivo. We found that the loss of the triplex forming site in developing lungs causes a dysregulation of gene programs associated with lung fibrosis. A set of these genes contain a triplex site directly at their promoter and are expressed in lung fibroblasts. We biophysically confirmed the formation of an RNA:dsDNA triplex with target promoters in vitro. We found that Fendrr with the Wnt signalling pathway regulates these genes, implicating that Fendrr synergizes with Wnt signalling in lung fibrosis.