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Institute
- Biochemie und Chemie (1952) (remove)
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.
In dieser Arbeit wurden Methoden entwickelt, mit denen das Auflösungsverhalten schwer wasserlöslicher schwacher Säuren verbessert werden kann. Als Modellwirkstoffe wurden drei Vertreter der Sulfonylharnstoff-Gruppe (Glibenclamid, Glipizid und Glimepirid) gewählt. Diese Wirkstoffe, werden zur oralen Standardtherapie des Typ 2 Diabetes eingesetzt. Die Ergebnisse aus den Löslichkeits- und Freisetzungsuntersuchungen der reinen Arzneistoffe bildeten in dieser Arbeit den Ausgangspunkt der Entwicklungsarbeit. Um den Einfluss der galenischen Methoden auf das Freisetzungsverhalten der entwickelten Formulierungen besser zu beurteilen, wurden ebenfalls entsprechende Handelspräparate (Euglucon N 3,5 mg, Luditec 5 mg und Amaryl 4 mg) untersucht. Zunächst wurden mit Glibenclamid und dem natürlichen ?-CD sowie verschieden Cyclodextrin-Derivaten (M-?-CD und HP-?-CD) binäre Komplexe im molaren Verhältnis von 1:2 (Glibenclamid:CD) hergestellt und charakterisiert. Anschließend wurden feste Lösungen aus Glibenclamid und Kollicoat(r) IR bzw. PVP K30 entwickelt. Bei den nachfolgenden Freisetzungsuntersuchungen zeichnete sich im Falle der binären Cyclodextrin-Komplexe ab, dass der Glibenclamid-HP-?-CD-Komplex das beste Freisetzungsverhalten von Glibenclamid in den untersuchten Medien erreichte. Bei den festen Lösungen von Glibenclamid gab es zwischen den beiden untersuchten Polymeren keine signifikanten Unterschiede im Ausmaß der Glibenclamidfreisetzung. Im nächsten Schritt wurden ternäre Komplexe (Glibenclamid-HP-?-CD-Polymer) entwickelt, eine Kombination aus binären CD- Komplexen und festen Lösungen. Als dritte Komponente wurden Kollicoat(r) IR, PVP K30 und PEG 6000 in unterschiedlichen Zusätzen, 5, 10 und 20% bezogen auf den zugrunde liegenden binären Glibenclamid-HP-?-CD-Komplex eingearbeitet. Die Charakterisierung der verschiedenen ternären Komplexe ergab, dass das beste Freisetzungsverhalten bei den Komplexen, welche einen 10%igen Kollicoat(r) IR- bzw. 20%igen PVP K30-Zusatz enthielten, generiert werden konnte. Bei den drei verwendeten Methoden (binäre-, ternäre Komplexe und feste Lösungen) erhielt man während der Freisetzungsuntersuchungen in den Medien mit einem pH-Wert unterhalb des pKs-Wertes von Glibenclamid (5,4) eine übersättigte Wirkstofflösung, was zum Teil innerhalb kürzester Zeit zum Präzipitieren des Wirkstoffes führte. Initiale DSC-Untersuchungen hatten gezeigt, dass Glibenclamid in den beschriebenen Präformulierungen in amorpher Form vorlag, was der Grund für die rasche Freisetzung war. Anschließend wurde versucht, das Präzipitieren zu verlangsamen und im besten Fall zu verhindern. Hierfür wurde HPMC in verschiedenen Formen verwendet. Das einfache Hinzumischen von HPMC in eine Gelatine-Kapsel zu der Glibenclamid-Formulierung führte aufgrund von Agglomeratbildungen zu einer deutlichen Verzögerung der Wirkstofffreisetzung. Pankreatin als Zusatz zum Freisetzungsmedium konnte die Bildung eines Agglomerates nicht verhindern, was darauf schließen ließ, dass dieses nicht durch sogenanntes "Cross-linking" der Gelatine entstanden war. In einem nächsten Schritt wurden HPMC-Kapseln eingesetzt. Die Glibenclamidfreisetzung konnte durch einfaches Austauschen der Gelatine-Kapseln gegen Vcaps(r) Plus-Kapseln in allen untersuchten Medien deutlich gesteigert werden, was auf die durch die Anwesenheit von HPMC verzögerte Präzipitation des Wirkstoffes im Freisetzungsmedium zurückzuführen war. Im nächsten Schritt wurde, die Formulierungsmethode von Glibenclamid, auf Glipizid übertragen. Es wurde analog zu Glibenclamid ein binärer Glipizid-HP-?-CD-Komplex im molaren Verhältnis von 1:2 (Glipizid:HP-?-CD) hergestellt. Dieser Komplex führte zu einer deutlichen Verbesserung des Auflösungsverhaltens von Glipizid, was zu einer annähernd 100%igen Wirkstofffreisetzung in allen untersuchten Medien führte. Weiterhin wurden die mit Glibenclamid entwickelten Methoden auch auf Glimepirid übertragen. Die Formulierung von Glimepirid zu einem binären Glimepirid-HP-?-CD-Komplex führte zu einer höheren Wirkstofffreisetzung, verglichen mit der kristallinen Reinsubstanz und des Handelspräparates. Durch die Verarbeitung von Glimepirid in ternären Komplexen erhöhte sich das Ausmaß der Wirkstofffreisetzung deutlich. Mit Kollicoat(r) IR konnte eine Wirkstofffreisetzung von ca. 60% der Dosis und mit PVP K30 als dritter Komponente sogar ca. 85% Wirkstofffreisetzung in Blank FeSSIF erzielt werden. Das Präzipitieren des Wirkstoffes nach initialer Wirkstofffreisetzung in Blank FeSSIF konnte durch den Einsatz von Vcaps(r) Plus-Kapseln deutlich reduziert werden. Stabilitätsuntersuchungen, welche mit den in dieser Arbeit verwendeten Präformulierungen durchgeführt wurden zeigten, dass der jeweilige Wirkstoff auch nach einem Jahr der Lagerung bei Raumtemperatur und < 30% rel. Luftfeuchte, in amorpher Form in den entsprechenden Präformulierungen vorlag. All diese Untersuchungen zeigten eindrucksvoll, dass sich Cyclodextrin-Derivate in Kombination mit hydrophilen Polymeren, dazu eigneten, die Verfügbarkeit schwer löslicher Wirkstoffe im Dünndarm für deren Resorption zu verbessern. Es wurde gezeigt, dass die Herstellungsmethodik der Cyclodextrin-Komplexe einen wesentlichen Einfluss auf die Wirkstofffreisetzung hatte.
Die Translokation von gelösten Stoffen über zelluläre Membranen ist ein essentieller biologischer Prozess, der durch eine Vielfalt an integralen Membranproteinen vermittelt wird. Diese sind in den selektiven Austausch verschiedenster Stoffe bzw. Teilchen involviert und ermöglichen somit die Kommunikation zwischen den einzelnen Zellkompartimenten untereinander bzw. mit der extrazellulären Umgebung. Eine der größten Familien paraloger Proteine, die den vektoriellen Transport von Substanzen über Zellmembranen katalysieren, stellen die ATP‐binding cassette (ABC)‐Transporter dar. Mitglieder dieser Proteinfamilie sind in allen bisher untersuchten Organismen von Prokaryoten bis hin zu höheren Eukaryoten vertreten und übernehmen essentielle Funktionen in einer Vielzahl von zellulären Abläufen. ABC‐Transporter zeichnen sich durch eine breite Substratdiversität aus, d.h. sie energetisieren unter ATP‐Verbrauch die Translokation zahlreicher, strukturell und chemisch unterschiedlicher Substanzen wie Zucker, Lipide, Ionen, Aminosäuren, Proteine oder auch zelltoxische Stoffe. In Bakterien können sie sowohl als Importproteine fungieren, welche hauptsächlich die Aufnahme von Nährstoffen vermitteln, als auch als Exportproteine, deren Hauptaufgabe es ist, zelltoxische Substanzen aus der Zelle heraus zu schleusen. Eukaryotische ABC‐Transporter sind sowohl in der Plasmamembran als auch in den intrazellulären Membranen zu finden – beispielsweise in denen des Endoplasmatischen Retikulums, des Golgi Apparats, der Lysosomen, der Peroxisomen und der Mitochondrien. Sie fungieren als Exportproteine und sind z.B. an der Ionen‐Homöostase, der Antigenprozessierung, der Insulinfreisetzung oder am Cholesterol‐ und Lipidtransport beteiligt. ...
Die Synthese des Coenzymmodells Flavin-benzimidazol-dinucleotid * gelang durch Kondensation von Benzimidazolribotid-imidazolid 1 oder Benzimidazolribotid-guanidiniumamidat 2 mit Flavinmononucleotid. Das Coenzymmodell war enzymatisch nicht aktiv und bildete keinen Enzym-Coenzym-Komplex. Im Absorptionsspektrum konnte eine Extinktionszunahme nach der Spaltung der Pyrophosphatbrücke nur im Bereich von 260 mμ beobachtet werden. Das Molekül liegt daher vermutlich in einer gefalteten Form vor. Ein Komplex zwischen Flavin- und Benzimidazolteil konnte nicht nachgewiesen werden. Eine Fluoreszenzunterdrückung, die im FAD durch die Komplexbildung zwischen Flavin- und Adeninteil bedingt wird, wurde im FBD-Coenzymmodell nicht beobachtet.
From a global viewpoint, a lot of time is spent within the indoor air compartment of vehicles. A German study on mobility has revealed that, on average, people spend 45 minutes per day inside vehicles. In recent years the number of cars has increased to around 43 million vehicles in private households. This means that more than one car can be used in every household. The ratio has been growing, especially in eastern Germany and rural areas. "Overall and especially outside the cities, the car remains by far number one mode of transport, especially in terms of mileage". Therefore, numerous international studies have addressed different aspects of indoor air hygiene, in the past years. In this paper, meaningful original studies on car indoor air pollution, related to VOCs, COx, PMs, microbials, BFRs, OPFRs, cigarettes, electronic smoking devices, high molecular weight plasticizer, and NOx are summarized in the form of a review. This present review aimed to summarize recently published studies in this important field of environmental medicine and points to the need for further studies with special recommendations for optimizing the interior air hygiene.
Secondary multidrug (Mdr) transporters utilize ion concentration gradients to actively remove antibiotics and other toxic compounds from cells. The model Mdr transporter MdfA from Escherichia coli exchanges dissimilar drugs for protons. The transporter should open at the cytoplasmic side to enable access of drugs into the Mdr recognition pocket. Here we show that the cytoplasmic rim around the Mdr recognition pocket represents a previously overlooked important regulatory determinant in MdfA. We demonstrate that increasing the positive charge of the electrically asymmetric rim dramatically inhibits MdfA activity and sometimes even leads to influx of planar, positively charged compounds, resulting in drug sensitivity. Our results suggest that unlike the mutants with the electrically modified rim, the membrane-embedded wild-type MdfA exhibits a significant probability of an inward-closed conformation, which is further increased by drug binding. Since MdfA binds drugs from its inward-facing environment, these results are intriguing and raise the possibility that the transporter has a sensitive, drug-induced conformational switch, which favors an inward-closed state.
Stickstoffmonoxid (NO) ist ein gasförmiger Botenstoff, der über die Regulation des Vasotonus, die Hemmung der Thrombocytenaggregation sowie die Stimulation der Angiogenese auf die vaskuläre Homöostase einwirkt. Das wichtigste NO-produzierende Enzym im kardiovaskulären System ist die endotheliale NO-Synthase (eNOS), deren Aktivität durch posttranslationale Modifikationen wie Phosphorylierung und Acylierung, durch Interaktionen mit regulatorischen Proteinen wie Ca2 /Calmodulin und Caveolin sowie durch differentielle subzelluläre Lokalisation reguliert wird. Dabei sind die Faktoren, welche die (Trans-)Lokation der eNOS zwischen subzellulären Kompartimenten wie den Caveolae der Plasmamembran und dem Golgi-Apparat dirigieren, weitgehend unbekannt. Zur Identifizierung neuer Interaktionspartner wurde humane eNOS im "yeast two-hybrid"-System als "Köderprotein" eingesetzt und dabei das Fragment eines neuen humanen Proteins identifiziert, das vorläufig NOSTRIN (für: eNOS traffic inducer) genannt wurde. Im Rahmen der vorliegenden Arbeit gelang nun die Klonierung der kompletten NOSTRIN-cDNA, der Nachweis einer spezifischen Interaktion von eNOS und NOSTRIN in Säugerzellen sowie die Charakterisierung von NOSTRIN als Modulator der subzellulären Lokalisation und Aktivität von eNOS. Nach der kompletten Klonierung der NOSTRIN-cDNA mit Hilfe einer 5'-RACE resultierte ein offenes Leseraster von 506 Aminosäuren entsprechend einer Größe von ca. 58 kDa für NOSTRIN. Eine Datenbankrecherche zum Vergleich der NOSTRIN-Sequenz mit Sequenzen bekannter Proteinmotive ergab die Vorhersage einer N-terminalen Cdc15-Domäne sowie einer C-terminalen SH3-Domäne. Die direkte Interaktion zwischen eNOS und NOSTRIN konnte durch Copräzipitation in vivo und in vitro bestätigt werden. Weiterhin wurde nachgewiesen, dass die SH3-Domäne von NOSTRIN essentiell für die Bindung an eNOS ist. Zur Untersuchung des Einflusses von NOSTRIN auf die eNOS-Lokalisation wurden stabil transfizierte CHO-Zellen, die eNOS überexprimierten ("CHO-eNOS") eingesetzt. In der Immunofluoreszenz war eNOS vornehmlich in Assoziation mit der Plasmamembran und dem Golgi-Apparat zu sehen. Mit Hilfe des Semliki-Forest-Virussystems (SFV) wurde nun NOSTRIN transient überexprimiert; dabei zeigte sich für NOSTRIN eine vesikelartige Verteilung im Cytoplasma. Die NOSTRIN-Überexpression führte zu einer drastischen Umverteilung von eNOS, die nun in charakteristischen vesikelartigen Strukturen mit NOSTRIN colokalisierte. Die Verwendung von NOSTRIN-Konstukten, bei denen die SH3- Domäne deletiert war ("NOSTRIN.SH3"), veränderte zwar die typische NOSTRIN-Lokalisation nicht, ließ aber auch die subzelluläre Verteilung von eNOS unverändert, so dass NOSTRIN.SH3 und eNOS in unterschiedlichen zellulären Kompartimenten lokalisiert waren. Mit Hilfe der Immunofluoreszenz konnte ebenfalls eine Colokalisation von NOSTRIN und Caveolin-1, einem inhibitorisch wirkenden Interaktionspartner von eNOS, nachgewiesen werden. Die Analyse von Copräzipitationen mit NOSTRIN bzw. NOSTRIN.SH3 zeigte, dass Caveolin-1 in eNOS-unabhängiger Weise an NOSTRIN bindet, so dass ein ternärer Komplex aus NOSTRIN, eNOS und Caveolin-1 resultiert. Zur Klärung der Frage, ob NOSTRIN neben der subzellulären Lokalisation auch die Aktivität von eNOS beeinflusst, wurde die NO-Freisetzung von CHO-eNOS-Zellen analysiert. Dabei ergab sich, dass die transiente Überexpression von NOSTRIN in CHO-eNOS-Zellen die eNOS-Aktivität um 62 % im Vergleich zu Kontrollzellen reduzierte. In humanen primären Endothelzellen konnte mittels Immunoblotting und Immunofluoreszenzmikroskopie das Vorkommen von endogenem NOSTRIN sowie dessen Colokalisation mit endogener eNOS an der Plasmamembran nachgewiesen werden. Die Ergebnisse der vorliegenden Dissertation führen zur Hypothese, dass NOSTRIN als "molekulare Klammer" zwischen eNOS und Caveolin-1 dient, eine dynamische Umverteilung von eNOS innerhalb der Zelle vermittelt und damit das Enzym - direkt und/oder indirekt - inhibiert. Somit dürfte NOSTRIN als Modulator der Aktivität und Lokalisation von eNOS eine wichtige Rolle bei der Regulation der endothelialen NO-Produktion spielen.
Mechanistic and structural studies of membrane proteins require their stabilization in specific conformations. Single domain antibodies are potent reagents for this purpose, but their generation relies on immunizations, which impedes selections in the presence of ligands typically needed to populate defined conformational states. To overcome this key limitation, we developed an in vitro selection platform based on synthetic single domain antibodies named sybodies. To target the limited hydrophilic surfaces of membrane proteins, we designed three sybody libraries that exhibit different shapes and moderate hydrophobicity of the randomized surface. A robust binder selection cascade combining ribosome and phage display enabled the generation of conformation-selective, high affinity sybodies against an ABC transporter and two previously intractable human SLC transporters, GlyT1 and ENT1. The platform does not require access to animal facilities and builds exclusively on commercially available reagents, thus enabling every lab to rapidly generate binders against challenging membrane proteins.
A high-precision pressure probe is described which allows non-invasive online-monitoring of the water relations of intact leaves. Real-time recording of the leaf water status occurred by data transfer to an Internet server. The leaf patch clamp pressure probe measures the attenuated pressure, Pp, of a leaf patch in response to a constant clamp pressure, Pclamp. Pp is sensed by a miniaturized silicone pressure sensor integrated into the device. The magnitude of Pp is dictated by the transfer function of the leaf, Tf, which is a function of leaf patch volume and ultimately of cell turgor pressure, Pc, as shown theoretically. The power function Tf=f(Pc) theoretically derived was experimentally confirmed by concomitant Pp and Pc measurements on intact leaflets of the liana Tetrastigma voinierianum under greenhouse conditions. Simultaneous Pp recordings on leaflets up to 10 m height above ground demonstrated that changes in Tf induced by Pc changes due to changes of microclimate and/or of the irrigation regime were sensitively reflected in corresponding changes of Pp. Analysis of the data show that transpirational water loss during the morning hours was associated with a transient rise in turgor pressure gradients within the leaflets. Subsequent recovery of turgescence during the afternoon was much faster than the preceding transpiration-induced water loss if the plants were well irrigated. Our data show the enormous potential of the leaf patch clamp pressure probe for leaf water studies including unravelling of the hydraulic communication between neighbouring leaves and over long distances within tall plants (trees).