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细菌缺乏已知的视网膜生物合成基因构建功能性视紫红质。

Bacterium Lacking a Known Gene for Retinal Biosynthesis Constructs Functional Rhodopsins.

机构信息

Microbial and Genetic Resources Research Group, Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST).

Atmosphere and Ocean Research Institute (AORI), The University of Tokyo.

出版信息

Microbes Environ. 2020;35(4). doi: 10.1264/jsme2.ME20085.

Abstract

Microbial rhodopsins, comprising a protein moiety (rhodopsin apoprotein) bound to the light-absorbing chromophore retinal, function as ion pumps, ion channels, or light sensors. However, recent genomic and metagenomic surveys showed that some rhodopsin-possessing prokaryotes lack the known genes for retinal biosynthesis. Since rhodopsin apoproteins cannot absorb light energy, rhodopsins produced by prokaryotic strains lacking genes for retinal biosynthesis are hypothesized to be non-functional in cells. In the present study, we investigated whether Aurantimicrobium minutum KNC, which is widely distributed in terrestrial environments and lacks any previously identified retinal biosynthesis genes, possesses functional rhodopsin. We initially measured ion transport activity in cultured cells. A light-induced pH change in a cell suspension of rhodopsin-possessing bacteria was detected in the absence of exogenous retinal. Furthermore, spectroscopic analyses of the cell lysate and HPLC-MS/MS analyses revealed that this strain contained an endogenous retinal. These results confirmed that A. minutum KNC possesses functional rhodopsin and, hence, produces retinal via an unknown biosynthetic pathway. These results suggest that rhodopsin-possessing prokaryotes lacking known retinal biosynthesis genes also have functional rhodopsins.

摘要

微生物视紫红质由与光吸收生色团视黄醛结合的蛋白质部分(视紫红质脱辅基蛋白)组成,其功能为离子泵、离子通道或光传感器。然而,最近的基因组和宏基因组调查表明,一些具有视紫红质的原核生物缺乏已知的视黄醛生物合成基因。由于视紫红质脱辅基蛋白不能吸收光能,因此,缺乏视黄醛生物合成基因的原核菌株产生的视紫红质被假设在细胞中是无功能的。在本研究中,我们研究了广泛分布于陆地环境中且缺乏任何先前鉴定的视黄醛生物合成基因的 Aurantimicrobium minutum KNC 是否具有功能性视紫红质。我们最初在培养的细胞中测量了离子转运活性。在不存在外源视黄醛的情况下,检测到具有视紫红质的细菌细胞悬浮液中的光诱导 pH 变化。此外,细胞裂解物的光谱分析和 HPLC-MS/MS 分析表明,该菌株含有内源性视黄醛。这些结果证实 A. minutum KNC 具有功能性视紫红质,因此通过未知的生物合成途径产生视黄醛。这些结果表明,缺乏已知视黄醛生物合成基因的具有视紫红质的原核生物也具有功能性视紫红质。

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