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一种跨分枝杆菌外膜摄取营养物质的新型双向通道。

A Novel Bi-Directional Channel for Nutrient Uptake across Mycobacterial Outer Envelope.

作者信息

Liu Lei, Wen Chongzheng, Cai Xiaoying, Gong Weimin

机构信息

Division of Life Sciences and Medicine, Hefei National Research Center for Interdisciplinary Sciences at the Microscale, University of Science and Technology of China, Hefei 230026, China.

出版信息

Microorganisms. 2024 Sep 4;12(9):1827. doi: 10.3390/microorganisms12091827.

Abstract

Nutrients are absorbed by special transport proteins on the cell membrane; however, there is less information regarding transporters across the mycobacterial outer envelope, which comprises dense and intricate structures. In this study, we focus on the model organism , which has a cell envelope similar to that of as well as on the TiME protein secretion tube across the mycobacterial outer envelope. We present transcriptome results and analyze the protein compositions of a mycobacterial surface envelope, determining that more transporters and porins are induced to complement the deletion of the gene in . The TiME protein is essential for nutrient utilization, as demonstrated in the uptake experiments and growth on various monosaccharides or with amino acids as the sole carbon source. Its deletion caused bacteria to be more sensitive to anti-TB drugs and to show a growth defect at an acid pH level, indicating that TiME promotes the survival of in antibiotic-containing and acidic environments. These results suggest that TiME tubes facilitate bi-directional processes for both protein secretion and nutrient uptake across the mycobacterial outer envelope.

摘要

营养物质通过细胞膜上的特殊转运蛋白进行吸收;然而,关于穿过分枝杆菌外膜的转运蛋白的信息较少,分枝杆菌外膜由致密且复杂的结构组成。在本研究中,我们聚焦于一种模式生物,其具有与[具体物种]相似的细胞包膜,以及穿过分枝杆菌外膜的TiME蛋白分泌管。我们展示了转录组结果,并分析了分枝杆菌表面包膜的蛋白质组成,确定有更多的转运蛋白和孔蛋白被诱导以补充[具体物种]中[具体基因]的缺失。TiME蛋白对于营养物质的利用至关重要,这在摄取实验以及在各种单糖上生长或以氨基酸作为唯一碳源的实验中得到了证明。其缺失导致细菌对抗结核药物更敏感,并在酸性pH水平下表现出生长缺陷,表明TiME促进[具体物种]在含抗生素和酸性环境中的存活。这些结果表明,TiME管促进了蛋白质分泌和营养物质穿过分枝杆菌外膜的双向过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e68/11434571/0ed7d603b980/microorganisms-12-01827-g001.jpg

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