TY - JOUR A1 - Schiele, Miriam A. A1 - Reinhard, Julia A1 - Reif, Andreas A1 - Domschke, Katharina A1 - Romanos, Marcel A1 - Deckert, Jürgen A1 - Pauli, Paul T1 - Developmental aspects of fear: Comparing the acquisition and generalization of conditioned fear in children and adults JF - Developmental Psychobiology N2 - Most research on human fear conditioning and its generalization has focused on adults whereas only little is known about these processes in children. Direct comparisons between child and adult populations are needed to determine developmental risk markers of fear and anxiety. We compared 267 children and 285 adults in a differential fear conditioning paradigm and generalization test. Skin conductance responses (SCR) and ratings of valence and arousal were obtained to indicate fear learning. Both groups displayed robust and similar differential conditioning on subjective and physiological levels. However, children showed heightened fear generalization compared to adults as indexed by higher arousal ratings and SCR to the generalization stimuli. Results indicate overgeneralization of conditioned fear as a developmental correlate of fear learning. The developmental change from a shallow to a steeper generalization gradient is likely related to the maturation of brain structures that modulate efficient discrimination between danger and (ambiguous) safety cues. KW - fear conditioning KW - fear generalization KW - development KW - skin conductance KW - maturation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-189488 VL - 58 IS - 4 ER - TY - JOUR A1 - Zukher, Inna A1 - Novikova, Maria A1 - Tikhonov, Anton A1 - Nesterchuk, Mikhail V. A1 - Osterman, Ilya A. A1 - Djordjevic, Marko A1 - Sergiev, Petr V. A1 - Sharma, Cynthia M. A1 - Severinov, Konstantin T1 - Ribosome-controlled transcription termination is essential for the production of antibiotic microcin C JF - Nucleic Acids Research N2 - Microcin C (McC) is a peptide-nucleotide antibiotic produced by Escherichia coli cells harboring a plasmid-borne operon mccABCDE. The heptapeptide MccA is converted into McC by adenylation catalyzed by the MccB enzyme. Since MccA is a substrate for MccB, a mechanism that regulates the MccA/MccB ratio likely exists. Here, we show that transcription from a promoter located upstream of mccA directs the synthesis of two transcripts: a short highly abundant transcript containing the mccA ORF and a longer minor transcript containing mccA and downstream ORFs. The short transcript is generated when RNA polymerase terminates transcription at an intrinsic terminator located in the intergenic region between the mccA and mccB genes. The function of this terminator is strongly attenuated by upstream mcc sequences. Attenuation is relieved and transcription termination is induced when ribosome binds to the mccA ORF. Ribosome binding also makes the mccA RNA exceptionally stable. Together, these two effects-ribosome induced transcription termination and stabilization of the message-account for very high abundance of the mccA transcript that is essential for McC production. The general scheme appears to be evolutionary conserved as ribosome-induced transcription termination also occurs in a homologous operon from Helicobacter pylori. KW - escherichia coli KW - messenger-RNA decay KW - translation KW - expression KW - synthetase KW - enterobacteria KW - inhibitors KW - maturation KW - target KW - stability Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114839 SN - 0305-1048 VL - 42 IS - 19 ER - TY - THES A1 - Fernández-Mora, Eugenia T1 - Analysis of the maturation of Rhodococcus equi-containing vacuoles in macrophages T1 - Analyse der Reifung von Rhodococcus equi-enthaltenden Phagosomen in Makrophagen N2 - Rhodococcus equi is a Gram-positive intracellular pathogen which can cause severe bronchopneumonia in foals. In recent years, the role of this bacterium as human pathogen has been noted, as R.equi infections in humans have increase in frequency. This increase is associated with the rise in immunosupressed individuals, specially AIDS patients, where infection leads to symptoms and pathology similar to those seen in foals with a high mortality rate. Due to its capability to survive and multiply in murine and equine macrophages, R.equi has been classified as a facultative intracellular bacterium. R.equi is found frequently in macrophages in alveolar infiltrate from infected animals. The pathogenicity of R.equi depends on its ability to exist and multiply inside macrophages and has been associated with the presence of virulence plasmids. It has been observed that, inside foal alveolar macrophages, R.equi-containing vacuoles (RCVs) do not mature into phagolysosomes. However, most of the intracellular events during R.equi infection have not been investigated in detail. The aim of this study was to elucidate the intracellular compartmentation of R.equi and the mechanism by which the bacteria avoid destruction in host macrophages. The importance of the virulence-associated plasmids of R.equi for the establishment of RCVs was also evaluated. Furthermore, the intracellular fate of viable and non-viable R.equi was compared in order to study whether viability of R.equi influeciantes the establishment of RCVs. In this study, the RCV was characterized by using a variety of endocytic markers to follow the path of the bacteria trhough murine macropages. Transmission electron microscopy-base analysis showed that R.equi was found equally frequently in phagosomes with loosely or thightly apposed membranes, and RCV often contains numerous membranous vesicles. Laser scanning microscopy of infected macrophages showed that the majority of phagosomes containing R.equi acquired transiently the early endosomal markers Rab5, Ptlns3P, and EEA-1, suggesting initially undisturbed phagosome maturation. Although the RCV acquired some late endosomal markers, such as Rab7, LAMP-1, and Lamp-2, they did not acquired vATPase, did not interact with pre-labeled lysosomes, and failed to acidify. These data clearly suggest that the RCV is a compartment which has left vacuoles that resemble multivesicular body compartments (MVB), which are transport intermediates between early and late endosomes and display internal vesicles very similar to the ones observed within RCVs. Analyisis of several R.equi strains containing either VapA- or VapB-expressing plasmids or neither demonstrated that the possession of the virulence-associated plasmids does not affect phagosome trafficking over a two hour period of infection. The finding that non-viable R.equi was still able to inhibit phagosome maturation (although not to the same extent as viable R.equi did) suggests that heat-insensitive factors, such as cell periphery lipids, may play a major role in inhibition of phagosome maturation, although heat-sensitive factors may also be involved. N2 - Rhodococcus equi ist ein Gram-positives, fakultativ intrazelulläres Bakterium, das unter anderem die Ursache von Bronchopneumonien bei Fohlen ist. Menschen und andere Säugetiere können ebenfalls von Infektionen mit R. equi betroffen sein. In den letzten Jahren ist die Häufigkeit klinischer Infektionen mit R. equi bei Menschen gestiegen. Die wachsende Anzahl an mmunosupprimierten Patienten (hauptsächlich AIDS-Patienten) liegt dieser Zunahme an Infektionen zugrunde. Die Symptomatologie und Pathologie der Infektion mit R. equi ist bei AIDS-Patienten und Fohlen ähnlich. Die Sterblichkeitsrate ist in beiden Fällen hoch. Die Fähigkeit der Rhodokokken, innerhalb von Makrophagen zu überleben und sich zu vermehren, ist mit dem Vorhandensein von Virulenzplasmiden (virulence-associated plasmids) verbunden. Innerhalb des Makrophagen befinden sich die Rhodokokken in einem Phagosom, das nicht mit Lysosomen fusioniert. Die genaue Kompartimentierung der Rhodococcus equi-enthaltenden Phagosomen in Makrophagen war bisher unbekannt und wurde deshalb in der vorliegenden Promotionsarbeit untersucht. Mit Hilfe mehrerer endozytischer Marker wurde das R. equi-enthaltende Kompartiment charakterisiert. Mögliche Unterschiede zwischen der Kompartimentierung von R. equi(+)- und R. equi(-)-enthaltenden Phagosomen ist ebenfalls Thema dieser Promotionsarbeit. Weiterhin wurde die Etablierung des phagosomalen Kompartiments für jeweils lebende und tote Rhodokokken verglichen. Transmissionselektronenmikroskopische Analysen haben gezeigt, dass die Phagosomenmembran Rhodococcus equi-enthaltender Phagosomen sowohl locker als auch eng anliegend sein kann (50%). Darüber hinaus wurden häufig zahlreiche, membranöse Vesikel in R. equi-enthaltenden Phagosomen gefunden. Diese Phagosomen zeigen somit Ähnlichkeiten zu Multivesicular Bodies. Multivesicular Bodies sind intermediäre Kompartimente zwischen frühen und späten Endosomen und zeigen ebenfalls eine Vielzahl von internen Vesikeln. Untersuchungen am konfokalen Lasermikroskop ergaben, dass die Mehrheit der R. equi-enthaltenden Phagosomen die früh endosomalen Marker Rab5, PtIns3P und EEA-1 transient akquirieren. Dieser Befund deutet auf eine ungestörte phagosomale Reifung im frühen Stadium hin. Trotz der beobachteten Akquisition der spät endosomalen Marker Rab7, LAMP-1 und LAMP-2 konnte keine Akquisition der vATPase, keine Interaktion mit vormarkierten Lysosomen und keine Ansäuerung von R.equi-enthaltenden Phagosomen nachgewiesen werden. Diese Ergebnisse weisen darauf hin, dass R. equi-enthaltende Phagosomen das früh endosomale Stadium abschließen, aber einen typisch spät endosomale Zustand nicht erreichen. Die Analyse unterschiedlicher R. equi-Stämme, die entweder vapA- oder vapB-exprimierende Virulenzplasmide enthalten, hat gezeigt, dass die Anwesenheit von Virulenzplasmiden die phagosomale Reifung über eine Infektionsperiode von zwei Stunden nicht beeinflusst. Getötete Rhodokokken waren in der Lage, die phagosomale Reifung zu inhibieren, aber in geringerem Ausmaß als lebende Rhodokokken. Das weist darauf hin, dass hitze-insensitive Faktoren (wie zum Beispiel Lipide der Zellwand) zur Inhibierung der phagosomalen Reifung entscheidend sind, obwohl dazu auch hitze-sensitive Faktoren (wie Proteine) relevant sein können. KW - Rhodococcus equi KW - Makrophage KW - Vakuole KW - Endosome KW - Phagosome KW - Rhodococcus KW - Mycobacterium KW - Reifung KW - endosome KW - phagosome KW - Rhodococcus KW - Mycobacterium KW - maturation Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-14049 ER -