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1.
Tiffany M. Tsang Jeffrey S. Wiese Suleyman Felek Malte Kronshage Eric S. Krukonis 《PloS one》2013,8(12)
The Yersinia pestis adhesin Ail mediates host cell binding and facilitates delivery of cytotoxic Yop proteins. Ail from Y. pestis and Y. pseudotuberculosis is identical except for one or two amino acids at positions 43 and 126 depending on the Y. pseudotuberculosis strain. Ail from Y. pseudotuberculosis strain YPIII has been reported to lack host cell binding ability, thus we sought to determine which amino acid difference(s) are responsible for the difference in cell adhesion. Y. pseudotuberculosis YPIII Ail expressed in Escherichia coli bound host cells, albeit at ∼50% the capacity of Y. pestis Ail. Y. pestis Ail single mutants, Ail-E43D and Ail-F126V, both have decreased adhesion and invasion in E. coli when compared to wild-type Y. pestis Ail. Y. pseudotuberculosis YPIII Ail also had decreased binding to the Ail substrate fibronectin, relative to Y. pestis Ail in E. coli. When expressed in Y. pestis, there was a 30–50% decrease in adhesion and invasion depending on the substitution. Ail-mediated Yop delivery by both Y. pestis Ail and Y. pseudotuberculosis Ail were similar when expressed in Y. pestis, with only Ail-F126V giving a statistically significant reduction in Yop delivery of 25%. In contrast to results in E. coli and Y. pestis, expression of Ail in Y. pseudotuberculosis led to no measurable adhesion or invasion, suggesting the longer LPS of Y. pseudotuberculosis interferes with Ail cell-binding activity. Thus, host context affects the binding activities of Ail and both Y. pestis and Y. pseudotuberculosis Ail can mediate cell binding, cell invasion and facilitate Yop delivery. 相似文献
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Karlheinz Grillitsch Pablo Tarazona Lisa Klug Tamara Wriessnegger Günther Zellnig Erich Leitner Ivo Feussner Günther Daum 《生物化学与生物物理学报:生物膜》2014
Despite similarities of cellular membranes in all eukaryotes, every compartment displays characteristic and often unique features which are important for the functions of the specific organelles. In the present study, we biochemically characterized the plasma membrane of the methylotrophic yeast Pichia pastoris with emphasis on the lipids which form the matrix of this compartment. Prerequisite for this effort was the design of a standardized and reliable isolation protocol of the plasma membrane at high purity. Analysis of isolated plasma membrane samples from P. pastoris revealed an increase of phosphatidylserine and a decrease of phosphatidylcholine compared to bulk membranes. The amount of saturated fatty acids in the plasma membrane was higher than in total cell extracts. Ergosterol, the final product of the yeast sterol biosynthetic pathway, was found to be enriched in plasma membrane fractions, although markedly lower than in Saccharomyces cerevisiae. A further characteristic feature of the plasma membrane from P. pastoris was the enrichment of inositol phosphorylceramides over neutral sphingolipids, which accumulated in internal membranes. The detailed analysis of the P. pastoris plasma membrane is discussed in the light of cell biological features of this microorganism especially as a microbial cell factory for heterologous protein production. 相似文献
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Dr. Erich Kessler 《Plant Systematics and Evolution》1985,151(1-2):67-71
The upper limit of temperature for growth is a species-specific character in the genusChlorella. The limits of 14Chlorella species range from 26–30°C (C. saccharophila) to 38–42°C (C. sorokiniana), withC. fusca var.vacuolata (34°C) andC. kessleri (34–36°C) assuming an intermediate position. Thus, there is no wide gap in the temperature limits between the normal (“low-temperature”)
species ofChlorella and the “high-temperature” species,C. sorokiniana. 相似文献
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Dr. Erich Buchner Sigrid Buchner Garrett Crawford William T. Mason Paul M. Salvaterra David B. Sattelle 《Cell and tissue research》1986,246(1):57-62
Summary Using a monoclonal antibody selective for the acetylcholine (ACh)-synthesizing enzyme choline acetyltransferase (ChAT) of Drosophila melanogaster we find ChAT-like immunoreactivity in specific synaptic regions throughout the brain of Drosophila melanogaster apart from the lobes and the peduncle of the mushroom body and most of the first visual neuropile (lamina). Several anatomically well-defined central brain structures exhibit particularly strong binding. Characteristic differential staining patterns are observed for each of the four neuromeres of the optic lobes. Cell bodies appear not to bind this antibody. The prominent features of the distribution of ChAT-like immunoreactivity are paralleled by the distribution of acetylcholine hydrolyzing enzymatic activity as revealed by histochemical staining for acetylcholine esterase (AChE). These results are discussed in comparison with published data on enzyme distribution, choline uptake and ACh receptor binding in the nervous system of Drosophila melanogaster. 相似文献
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- 1. The net uptake of α-aminoisobutyric acid (AIB) in Ehrlich ascites tumor cells has been studied under a variety of transmembrane concentration gradients of Na+, K+ and AIB itself. 相似文献
8.
Gerhard H. Schmidt Erich Gürsch 《Ethology : formerly Zeitschrift fur Tierpsychologie》1971,28(1):19-32
Die während des Einspinnvorganges ablaufenden Verhaltensweisen werden bei Formica pratensis Retz. genau untersucht und mit anderen Ameisenarten verglichen.
- 1 Die Larve führt vor der Sekretabgabe Suchbewegungen aus, wodurch die Pflegerinnen veranlaßt werden, sie in vorher zusammengetragenes, feines Nestmaterial zu legen. Hier läßt sie eine Mulde entstehen, die ihr die Orientierung beim Kokonbau erleichtert.
- 2 Zum Kokonbau ist Nestmaterial unbedingt erforderlich; Licht als nestfremder Faktor verhindert die Gespinstanfertigung nicht.
- 3 Beim Kokonbau lassen sich drei Phasen unterscheiden: a) Anlage des Gerüstes durch Verbindung einzelner Nestpartikel zu einem strumpfförmigen Gebilde; b) Anfertigung des Außenkokons durch Abdichten der im Gerüst vorhandenen Poren; c) Bau des Innenkokons durch Spinnen von Achtertouren, wobei zunächst ein Kokonpol mit der dazugehörigen Kokonhälfte angefertigt wird und erst nach Drehung urn die Querachse der andere Pol.
- 4 Drehbewegungen um Quer- und Längsachse kommen in alien Phasen des Kokonbaues vor.
- 5 Die Achtertour wird regelmäßig durch eine Absteifbewegung, die der Formung des Kokons dient, unterbrochen.
- 6 Das plastische Verhalten der Larven beim Kokonbau wird aufgezeigt. Die Verhaltensweisen werden anhand eines Reiz-Wirkungsschemas diskutiert.
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