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本文引用的文献

1
Single-molecule DNA detection with an engineered MspA protein nanopore.利用工程化MspA蛋白纳米孔进行单分子DNA检测。
Proc Natl Acad Sci U S A. 2008 Dec 30;105(52):20647-52. doi: 10.1073/pnas.0807514106. Epub 2008 Dec 19.
2
The role of lipids for the functional integrity of porin: an FTIR study using lipid and protein reporter groups.脂质对孔蛋白功能完整性的作用:一项使用脂质和蛋白质报告基团的傅里叶变换红外光谱研究
Biochemistry. 2008 Nov 18;47(46):12126-34. doi: 10.1021/bi801224y. Epub 2008 Oct 23.
3
Disclosure of the mycobacterial outer membrane: cryo-electron tomography and vitreous sections reveal the lipid bilayer structure.分枝杆菌外膜的揭示:冷冻电子断层扫描和玻璃体切片揭示脂质双层结构。
Proc Natl Acad Sci U S A. 2008 Mar 11;105(10):3963-7. doi: 10.1073/pnas.0709530105. Epub 2008 Mar 3.
4
The role of iron in Mycobacterium smegmatis biofilm formation: the exochelin siderophore is essential in limiting iron conditions for biofilm formation but not for planktonic growth.铁在耻垢分枝杆菌生物膜形成中的作用:外切螯合铁载体在限制生物膜形成的铁条件方面至关重要,但对浮游生长并非如此。
Mol Microbiol. 2007 Oct;66(2):468-83. doi: 10.1111/j.1365-2958.2007.05935.x. Epub 2007 Sep 14.
5
Characterization of nanostructured surfaces generated by reconstitution of the porin MspA from Mycobacterium smegmatis.耻垢分枝杆菌孔蛋白MspA重组产生的纳米结构表面的表征
Small. 2007 Jun;3(6):1084-97. doi: 10.1002/smll.200600559.
6
Biogenesis of the gram-negative bacterial outer membrane.革兰氏阴性菌外膜的生物合成
Annu Rev Microbiol. 2007;61:191-214. doi: 10.1146/annurev.micro.61.080706.093245.
7
Assembly factor Omp85 recognizes its outer membrane protein substrates by a species-specific C-terminal motif.装配因子Omp85通过物种特异性的C端基序识别其外膜蛋白底物。
PLoS Biol. 2006 Nov;4(11):e377. doi: 10.1371/journal.pbio.0040377.
8
Crystal structure of osmoporin OmpC from E. coli at 2.0 A.大肠杆菌渗透压孔蛋白OmpC在2.0埃分辨率下的晶体结构。
J Mol Biol. 2006 Oct 6;362(5):933-42. doi: 10.1016/j.jmb.2006.08.002. Epub 2006 Aug 3.
9
Advances in understanding bacterial outer-membrane biogenesis.细菌外膜生物合成的理解进展。
Nat Rev Microbiol. 2006 Jan;4(1):57-66. doi: 10.1038/nrmicro1322.
10
Topology of the porin MspA in the outer membrane of Mycobacterium smegmatis.耻垢分枝杆菌外膜中孔蛋白MspA的拓扑结构。
J Biol Chem. 2006 Mar 3;281(9):5908-15. doi: 10.1074/jbc.M511642200. Epub 2005 Dec 12.

耻垢分枝杆菌孔蛋白MspA周质环的功能。

Functions of the periplasmic loop of the porin MspA from Mycobacterium smegmatis.

作者信息

Huff Jason, Pavlenok Mikhail, Sukumaran Suja, Niederweis Michael

机构信息

Department of Microbiology, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.

出版信息

J Biol Chem. 2009 Apr 10;284(15):10223-31. doi: 10.1074/jbc.M808599200. Epub 2009 Feb 10.

DOI:10.1074/jbc.M808599200
PMID:19208627
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2665076/
Abstract

MspA is the major porin of Mycobacterium smegmatis and mediates diffusion of small and hydrophilic solutes across the outer membrane. The octameric structure of MspA, its sharply defined constriction zone, and a large periplasmic loop L6 represent novel structural features. L6 consists of 13 amino acids and is directly adjacent to the constriction zone. Deletion of 3, 5, 7, 9, and 11 amino acids of the L6 loop resulted in functional pores that restored glucose uptake and growth of a porin mutant of M. smegmatis. Lipid bilayer experiments revealed that all mutant channels were noisier than wild type (wt) MspA, indicating that L6 is required for pore stability in vitro. Voltage gating of the Escherichia coli porin OmpF was attributed to loops that collapse into the channel in response to a strong electrical field. Here, we show that deletion mutants Delta7, Delta9, and Delta11 had critical voltages similar to wt MspA. This demonstrated that the L6 loop is not the primary voltage-dependent gating mechanism of MspA. Surprisingly, large deletions in L6 resulted in 3-6-fold less extractable pores, whereas small deletions did not alter expression levels of MspA. Pores with large deletions in L6 were more permissive for glucose than smaller deletion mutants, whereas their single channel conductance was similar to that of wt MspA. These results indicate that translocation of ions through the MspA pore is governed by different mechanisms than that of neutral solutes. This is the first study identifying a molecular determinant of solute translocation in a mycobacterial porin.

摘要

MspA是耻垢分枝杆菌的主要孔蛋白,介导小分子亲水性溶质跨外膜的扩散。MspA的八聚体结构、其界限分明的收缩区以及一个大的周质环L6代表了新的结构特征。L6由13个氨基酸组成,直接毗邻收缩区。缺失L6环的3、5、7、9和11个氨基酸会产生功能性孔道,恢复耻垢分枝杆菌孔蛋白突变体的葡萄糖摄取和生长。脂质双层实验表明,所有突变体通道比野生型(wt)MspA更易产生噪声,表明L6在体外对孔道稳定性是必需的。大肠杆菌孔蛋白OmpF的电压门控归因于在强电场作用下坍缩进入通道的环。在此,我们表明缺失突变体Delta7、Delta9和Delta11具有与wt MspA相似的临界电压。这证明L6环不是MspA主要的电压依赖性门控机制。令人惊讶的是,L6中的大缺失导致可提取孔道减少3至6倍,而小缺失并未改变MspA的表达水平。L6中存在大缺失的孔道对葡萄糖的通透性比小缺失突变体更高,而它们的单通道电导与wt MspA相似。这些结果表明,离子通过MspA孔道的转运机制与中性溶质不同。这是首次鉴定分枝杆菌孔蛋白中溶质转运分子决定因素的研究。