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海洋细菌 KMM 3633 中的孔蛋白:分离、理化性质和功能活性。

Porin from Marine Bacterium KMM 3633: Isolation, Physico-Chemical Properties, and Functional Activity.

机构信息

G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far Eastern Branch, Russian Academy of Sciences, pr. 100 let Vladivostoku, 159, 690022 Vladivostok, Russia.

N. F. Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Health of Russia, Gamaleya Str., 18, 123098 Moscow, Russia.

出版信息

Molecules. 2020 Jul 8;25(14):3131. doi: 10.3390/molecules25143131.

Abstract

KMM 3633, extreme living marine bacterium was isolated from a sample of coastal sea ice in the Amursky Bay near Vladivostok, Russia. The goal of our investigation is to study outer membrane channels determining cell permeability. Porin from KMM 3633 (MpOmp) has been isolated and characterized. Amino acid analysis and whole genome sequencing were the sources of amino acid data of porin, identified as Porin_4 according to the conservative domain searching. The amino acid composition of MpOmp distinguished by high content of acidic amino acids and low content of sulfur-containing amino acids, but there are no tryptophan residues in its molecule. The native MpOmp existed as a trimer. The reconstitution of MpOmp into black lipid membranes demonstrated its ability to form ion channels whose conductivity depends on the electrolyte concentration. The spatial structure of MpOmp had features typical for the classical gram-negative porins. However, the oligomeric structure of isolated MpOmp was distinguished by very low stability: heat-modified monomer was already observed at 30 °C. The data obtained suggest the stabilizing role of lipids in the natural membrane of marine bacteria in the formation of the oligomeric structure of porin.

摘要

KMM 3633 是一种极端生境海洋细菌,从俄罗斯符拉迪沃斯托克附近的阿穆尔湾沿海海冰样本中分离得到。我们的研究目标是研究决定细胞通透性的外膜通道。已经分离和表征了 KMM 3633 的孔蛋白(MpOmp)。氨基酸分析和全基因组测序是孔蛋白氨基酸数据的来源,根据保守结构域搜索将其鉴定为 Porin_4。MpOmp 的氨基酸组成以酸性氨基酸含量高和含硫氨基酸含量低为特征,但分子中没有色氨酸残基。天然的 MpOmp 以三聚体形式存在。MpOmp 被重建到黑色脂质膜中,证明其具有形成离子通道的能力,其电导率取决于电解质浓度。MpOmp 的空间结构具有典型的经典革兰氏阴性孔蛋白的特征。然而,分离的 MpOmp 的寡聚结构稳定性很差:在 30°C 时已经观察到热修饰的单体。所得数据表明,在海洋细菌的天然膜中,脂质在形成孔蛋白的寡聚结构中起稳定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/998f/7397200/b05f648004d3/molecules-25-03131-g001.jpg

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