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31.
Nina Bertaux-Skeirik Rui Feng Michael A. Schumacher Jing Li Maxime M. Mahe Amy C. Engevik Jose E. Javier Richard M. Peek Jr Karen Ottemann Veronique Orian-Rousseau Gregory P. Boivin Michael A. Helmrath Yana Zavros 《PLoS pathogens》2015,11(2)
The cytotoxin-associated gene (Cag) pathogenicity island is a strain-specific
constituent of Helicobacter pylori (H. pylori) that
augments cancer risk. CagA translocates into the cytoplasm where it stimulates cell
signaling through the interaction with tyrosine kinase c-Met receptor, leading
cellular proliferation. Identified as a potential gastric stem cell marker,
cluster-of-differentiation (CD) CD44 also acts as a co-receptor for c-Met, but
whether it plays a functional role in H. pylori-induced epithelial
proliferation is unknown. We tested the hypothesis that CD44 plays a functional role
in H. pylori-induced epithelial cell proliferation. To assay changes
in gastric epithelial cell proliferation in relation to the direct interaction with
H. pylori, human- and mouse-derived gastric organoids were
infected with the G27 H. pylori strain or a mutant G27 strain
bearing cagA deletion (∆CagA::cat). Epithelial proliferation
was quantified by EdU immunostaining. Phosphorylation of c-Met was analyzed by
immunoprecipitation followed by Western blot analysis for expression of CD44 and
CagA. H. pylori infection of both mouse- and human-derived gastric
organoids induced epithelial proliferation that correlated with c-Met
phosphorylation. CagA and CD44 co-immunoprecipitated with phosphorylated c-Met. The
formation of this complex did not occur in organoids infected with
∆CagA::cat. Epithelial proliferation in response to
H. pylori infection was lost in infected organoids derived from
CD44-deficient mouse stomachs. Human-derived fundic gastric organoids exhibited an
induction in proliferation when infected with H. pylorithat was not
seen in organoids pre-treated with a peptide inhibitor specific to CD44. In the
well-established Mongolian gerbil model of gastric cancer, animals treated with CD44
peptide inhibitor Pep1, resulted in the inhibition of H.
pylori-induced proliferation and associated atrophic gastritis. The current
study reports a unique approach to study H. pylori interaction with
the human gastric epithelium. Here, we show that CD44 plays a functional role in
H. pylori-induced epithelial cell proliferation. 相似文献
32.
33.
Shan Li Kai Hu Jing Guo Xiaoling Yang Yunguo Zhu Zhou Cheng 《Biochemical Systematics and Ecology》2011,39(4-6):725-731
Genetic diversity and differentiation of four landraces of Fritillaria thunbergii Miq. and two congeners Fritillaria cirrhosa D. Don and Fritillaria anhuiensis S. C. Chen et S. F. Yin were evaluated using ISSR markers. The results showed that the genetic diversity of F. thunbergii was high at the specie level but relatively lower at the landrace level. A high level of genetic differentiation among four F. thunbergii landraces was detected based on the gene differentiation coefficient and the AMOVA, in line with the low inter-landrace gene flow. MS-tree analysis showed that the four F. thunbergii landraces were clustered on adjacent positions of the tree, and that Kuanye (Ft-KY) landrace was relatively distantly related to other landraces. In line with the MS-tree analysis, PCoA revealed that the three species of Fritillaria can be divided into two groups and three subgroups, among which there occurred a remarkable genetic differentiation. 相似文献
34.
Mycoplasmas exhibit a novel, substrate-dependent gliding motility that is driven by ∼400 “leg” proteins. The legs interact with the substrate and transmit the forces generated by an assembly of ATPase motors. The velocity of the cell increases linearly by nearly 10-fold over a narrow temperature range of 10-40°C. This corresponds to an Arrhenius factor that decreases from ∼45 kBT at 10°C to ∼10 kBT at 40°C. On the other hand, load-velocity curves at different temperatures extrapolate to nearly the same stall force, suggesting a temperature-insensitive force-generation mechanism near stall. In this article, we propose a leg-substrate interaction mechanism that explains the intriguing temperature sensitivity of this motility. The large Arrhenius factor at low temperature comes about from the addition of many smaller energy barriers arising from many substrate-binding sites at the distal end of the leg protein. The Arrhenius dependence attenuates at high temperature due to two factors: 1), the reduced effective multiplicity of energy barriers intrinsic to the multiple-site binding mechanism; and 2), the temperature-sensitive weakly facilitated leg release that curtails the power stroke. The model suggests an explanation for the similar steep, sub-Arrhenius temperature-velocity curves observed in many molecular motors, such as kinesin and myosin, wherein the temperature behavior is dominated not by the catalytic biochemistry, but by the motor-substrate interaction. 相似文献
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38.
Yanji Qu Lin Zhuo Na Li Yiqing Hu Weihua Chen Yun Zhou Jinwei Wang Qingmei Tao Jing Hu Xiaolu Nie Siyan Zhan 《PloS one》2015,10(4)
International hospital-based studies have indicated a high risk of cognitive impairment after stroke, evidence from community-based studies in China is scarce. To determine the prevalence of post-stroke cognitive impairment (PSCI) and its subtypes in stroke survivors residing in selected rural and urban Chinese communities, we conducted a community-based, cross-sectional study in 599 patients accounting for 48% of all stroke survivors registered in the 4 communities, who had suffered confirmed strokes and had undergone cognitive assessments via the Montreal Cognitive Assessment (MoCA), Mini-Mental State Examination (MMSE), and Hachinski Ischemia Scale (HIS). Detection of PSCI was based on scores in these neuropsychological scales. Factors potentially impacting on occurrence of PSCI were explored by comparing demographic characteristics, stroke features, and cardiovascular risk factors between patients with and without PSCI. The overall prevalence of PSCI was 80.97% (95%CI: 77.82%-84.11%), while that of non-dementia PSCI (PSCI-ND) and post-stroke vascular dementia (PSD) was 48.91% (95%CI: 44.91%-52.92%) and 32.05% (95%CI: 28.32%-35.79%), respectively. Prior stroke and complications during the acute phase were independent risk factors for PSCI. The risk of recurrent stroke survivors having PSCI was 2.7 times higher than for first-episode survivors, and it was 3 times higher for those with complications during the acute phase than for those without. The higher prevalence of PSCI in this study compared with previous Chinese studies was possibly due to the combined effects of including rural stroke survivors, a longer period from stroke onset, and different assessment methods. There is an urgent need to recognize and prevent PSCI in stroke patients, especially those with recurrent stroke and complications during the acute phase. 相似文献
39.
Snap-25 is polarized to axons and abundant along the axolemma: an immunogold study of intact neurons
SNAP-25, synaptosomal associated protein of 25 kDa, is reported to be a t-SNARE (target receptor associated with the presynaptic plasma membrane) involved in the docking and fusion of synaptic vesicles. We present here the first ultrastructural localization of SNAP-25 in intact neurons by pre-embedding EM immunocytochemistry in rat brains, hippocampal slice cultures, and PC12 cells. In differentiated neurons, SNAP-25 labeling was clearly membrane-associated. The labeling was most prominent in the plasma membrane of axons and excluded from the plasma membranes of soma and dendrites. Furthermore, SNAP-25 did not appear to be restricted to the synaptic junctions. SNAP-25 labeling was seen in the cytoplasm of the soma and large dendrites, mostly associated with the Golgi complexes. There were also some SNAP-25 labeled tubulo-vesicular structures in the cytoplasm of the soma and the axons, but rarely in the smaller dendrites. In PC12 cells, after 5–10 minutes of high potassium (75 mM) stimulation in the presence of HRP, SNAP-25 labeling appeared, additionally, on HRP-filled early endosomes. After a longer (20–30 minutes) HRP incubation, most of the later stage endosomes and lysosomes were loaded with HRP but they were negative for SNAP-25. These results suggest that SNAP-25 is sorted out of these late endosomal compartments, and that the bulk of the SNAP-25 protein is probably recycled back to the axolemma from the early endosomes. In contrast, in those samples which were incubated with HRP for longer periods, there were still some SNAP-25–positive vesicular structures which were HRP-negative. These structures most likely represent anterograde vesicles that carry newly synthesized SNAP-25 from the soma to the axolemma by axonal transport. SNAP-25 appears to be sorted at the Golgi complex to reach the axolemma specifically. Its widespread distribution all along the axolemma does not support the view of SNAP-25 as a t-SNARE limited for synaptic exocytosis. 相似文献
40.
Zhi Xue Daniel Wei‐Jing Kwong Ling‐Wei Xue Qing Liu An‐Xin Hou Wai‐Kwok Wong 《化学与生物多样性》2009,6(7):1131-1143
Novel diselenide‐linked porphyrin dimers were synthesized under phase‐transfer catalysis conditions. The targeted compounds were characterized by 1H‐NMR, high‐resolution mass spectrometry, UV/VIS and fluorescence spectroscopies, redox‐potential measurements, and elemental analysis. The interaction of the title compounds with DNA was studied using UV/VIS, fluorescence, and circular dichroism (CD) spectroscopies. The relative rates of singlet‐oxygen production from the diselenide‐linked porphyrin dimers upon photoirradiation were also measured. 相似文献