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Hyp730 是一种高度保守且与休眠特异性相关的假设性膜蛋白,本研究对其功能和结构进行了鉴定。

Functional and structural characterization of Hyp730, a highly conserved and dormancy-specific hypothetical membrane protein.

机构信息

Department of Biology and Biochemistry, University of Houston, Houston, TX, USA.

Department of Mathematics, University of Houston, Houston, TX, USA.

出版信息

Microbiologyopen. 2021 Jan;10(1):e1154. doi: 10.1002/mbo3.1154.

Abstract

Membrane proteins represent major drug targets, and the ability to determine their functions, structures, and conformational changes will significantly advance mechanistic approaches to both biotechnology and bioremediation, as well as the fight against pathogenic bacteria. A pertinent example is Mycobacterium tuberculosis (H37Rv), which contains 4000 protein-coding genes, with almost a thousand having been categorized as 'membrane protein', and a few of which (1%) have been functionally characterized and structurally modeled. However, the functions and structures of most membrane proteins that are sparsely, or only transiently, expressed, but essential in small phenotypic subpopulations or under stress conditions such as persistence or dormancy, remain unknown. Our deep quantitative proteomics profiles revealed that the hypothetical membrane protein 730 (Hyp730) WP_010079730 (protein ID Mlut_RS11895) from M. luteus is upregulated in dormancy despite a ~5-fold reduction in overall protein diversity. Its H37Rv paralog, Rv1234, showed a similar proteomic signature, but the function of Hyp730-like proteins has never been characterized. Here, we present an extensive proteomic and transcriptomic analysis of Hyp730 and have also characterized its in vitro recombinant expression, purification, refolding, and essentiality as well as its tertiary fold. Our biophysical studies, circular dichroism, and tryptophan fluorescence are in immediate agreement with in-depth in silico 3D-structure prediction, suggesting that Hyp730 is a double-pass membrane-spanning protein. Ablation of Hyp730-expression did not alter M. luteus growth, indicating that Hyp730 is not essential. Structural homology comparisons showed that Hyp730 is highly conserved and non-redundant in G+C rich Actinobacteria and might be involved, under stress conditions, in an energy-saving role in respiration during dormancy.

摘要

膜蛋白是主要的药物靶点,能够确定它们的功能、结构和构象变化将极大地推动生物技术和生物修复以及对抗致病细菌的机制方法的发展。一个相关的例子是结核分枝杆菌(H37Rv),它包含约 4000 个编码蛋白的基因,其中近千个被归类为“膜蛋白”,其中一些(约 1%)已经具有功能特征和结构建模。然而,在小表型亚群或在持久性或休眠等应激条件下,稀疏或仅短暂表达但必不可少的大多数膜蛋白的功能和结构仍然未知。我们的深度定量蛋白质组学分析表明,来自乳杆菌的假设膜蛋白 730(Hyp730)WP_010079730(蛋白 ID Mlut_RS11895)尽管总蛋白多样性减少了约 5 倍,但在休眠时上调。其 H37Rv 同源物 Rv1234 显示出类似的蛋白质组学特征,但 Hyp730 样蛋白的功能从未被表征过。在这里,我们对 Hyp730 进行了广泛的蛋白质组学和转录组学分析,还对其体外重组表达、纯化、重折叠和必需性以及三级折叠进行了表征。我们的生物物理研究,圆二色性和色氨酸荧光与深入的计算 3D 结构预测立即一致,表明 Hyp730 是一种双通膜跨膜蛋白。去除 Hyp730 的表达并没有改变乳杆菌的生长,表明 Hyp730 不是必需的。结构同源性比较表明,Hyp730 在富含 G+C 的放线菌中高度保守且不可替代,并且在应激条件下可能在休眠期间呼吸的节能作用中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5cb/7856521/d3fe31e2f6fa/MBO3-10-e1154-g001.jpg

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