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本文引用的文献

1
Formation of oligomeric rings by XcpQ and PilQ, which are involved in protein transport across the outer membrane of Pseudomonas aeruginosa.由XcpQ和PilQ形成的寡聚环,它们参与铜绿假单胞菌外膜的蛋白质转运。
Mol Microbiol. 1998 Jan;27(1):209-19. doi: 10.1046/j.1365-2958.1998.00677.x.
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The outer membrane component, YscC, of the Yop secretion machinery of Yersinia enterocolitica forms a ring-shaped multimeric complex.小肠结肠炎耶尔森菌Yop分泌机制的外膜成分YscC形成一种环状多聚体复合物。
Mol Microbiol. 1997 Nov;26(4):789-97. doi: 10.1046/j.1365-2958.1997.6141981.x.
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The filamentous phage pIV multimer visualized by scanning transmission electron microscopy.通过扫描透射电子显微镜观察到的丝状噬菌体pIV多聚体。
Science. 1997 Nov 28;278(5343):1635-8. doi: 10.1126/science.278.5343.1635.
4
The chaperone-assisted membrane release and folding pathway is sensed by two signal transduction systems.伴侣蛋白辅助的膜释放和折叠途径由两个信号转导系统感知。
EMBO J. 1997 Nov 3;16(21):6394-406. doi: 10.1093/emboj/16.21.6394.
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Type III secretion systems: machines to deliver bacterial proteins into eukaryotic cells?III型分泌系统:将细菌蛋白输送到真核细胞中的机器?
Trends Microbiol. 1997 Apr;5(4):148-56. doi: 10.1016/S0966-842X(97)01029-9.
6
Development of pilus organelle subassemblies in vitro depends on chaperone uncapping of a beta zipper.菌毛细胞器亚组件在体外的形成取决于β拉链伴侣蛋白的去封闭作用。
Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):12890-5. doi: 10.1073/pnas.93.23.12890.
7
Secondary structure of the outer membrane proteins OmpA of Escherichia coli and OprF of Pseudomonas aeruginosa.大肠杆菌外膜蛋白OmpA和铜绿假单胞菌外膜蛋白OprF的二级结构。
J Bacteriol. 1996 Oct;178(20):6067-9. doi: 10.1128/jb.178.20.6067-6069.1996.
8
The product of the pilQ gene is essential for the biogenesis of type IV pili in Neisseria gonorrhoeae.pilQ基因的产物对于淋病奈瑟菌IV型菌毛的生物合成至关重要。
Mol Microbiol. 1995 Dec;18(5):975-86. doi: 10.1111/j.1365-2958.1995.18050975.x.
9
Molecular basis of two subfamilies of immunoglobulin-like chaperones.免疫球蛋白样分子伴侣两个亚家族的分子基础。
EMBO J. 1996 Aug 1;15(15):3792-805.
10
Essential role of a sodium dodecyl sulfate-resistant protein IV multimer in assembly-export of filamentous phage.十二烷基硫酸钠抗性蛋白IV多聚体在丝状噬菌体组装-输出中的关键作用
J Bacteriol. 1996 Apr;178(7):1962-70. doi: 10.1128/jb.178.7.1962-1970.1996.

PapC 外膜蛋白形成寡聚通道:对跨外膜菌毛生物合成的影响。

The PapC usher forms an oligomeric channel: implications for pilus biogenesis across the outer membrane.

作者信息

Thanassi D G, Saulino E T, Lombardo M J, Roth R, Heuser J, Hultgren S J

机构信息

Department of Molecular Microbiology, Box 8230, 660 South Euclid Avenue, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Mar 17;95(6):3146-51. doi: 10.1073/pnas.95.6.3146.

DOI:10.1073/pnas.95.6.3146
PMID:9501230
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC19709/
Abstract

Bacterial virulence factors are typically surface-associated or secreted molecules that in Gram-negative bacteria must cross the outer membrane (OM). Protein translocation across the bacterial OM is not well understood. To elucidate this process we studied P pilus biogenesis in Escherichia coli. We present high-resolution electron micrographs of the OM usher PapC and show that it forms an oligomeric complex containing a channel approximately 2 nm in diameter. This is large enough to accommodate pilus subunits or the linear tip fibrillum of the pilus but not large enough to accommodate the final 6.8-nm-wide helical pilus rod. We show that P pilus rods can be unraveled into linear fibers by incubation in 50% glycerol. Thus, they are likely to pass through the usher in this unwound form. Packaging of these fibers into their final helical structure would only occur outside the cell, a process that may drive outward growth of the pilus organelles. The usher complex appears to be similar to complexes formed by members of the PulD/pIV family of OM proteins, and thus these two protein families, previously thought to be unrelated, may share structural and functional homologies.

摘要

细菌毒力因子通常是与表面相关或分泌的分子,在革兰氏阴性细菌中,这些分子必须穿过外膜(OM)。蛋白质穿过细菌外膜的过程尚未完全了解。为了阐明这一过程,我们研究了大肠杆菌中P菌毛的生物合成。我们展示了外膜 usher蛋白PapC的高分辨率电子显微照片,并表明它形成了一个寡聚复合体,其中包含一个直径约2纳米的通道。这个通道足够大,可以容纳菌毛亚基或菌毛的线性末端纤维,但不足以容纳最终6.8纳米宽的螺旋菌毛杆。我们表明,通过在50%甘油中孵育,P菌毛杆可以解螺旋成线性纤维。因此,它们可能以这种解螺旋的形式穿过usher蛋白。这些纤维包装成最终的螺旋结构只会发生在细胞外,这一过程可能驱动菌毛细胞器向外生长。usher蛋白复合体似乎与由外膜蛋白PulD/pIV家族成员形成的复合体相似,因此,这两个以前被认为无关的蛋白家族可能共享结构和功能同源性。