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球形红细菌捕光突变体的生理与结构分析

Physiological and structural analysis of light-harvesting mutants of Rhodobacter sphaeroides.

作者信息

Kiley P J, Varga A, Kaplan S

机构信息

Department of Microbiology, University of Illinois at Urbana-Champaign 61801.

出版信息

J Bacteriol. 1988 Mar;170(3):1103-15. doi: 10.1128/jb.170.3.1103-1115.1988.

Abstract

Two mutants of Rhodobacter sphaeroides defective in formation of light-harvesting spectral complexes were examined in detail. Mutant RS103 lacked the B875 spectral complex despite the fact that substantial levels of the B875-alpha polypeptide (and presumably the beta polypeptide) were present. The B800-850 spectral complex was derepressed in RS103, even at high light intensities, and the growth rate was near normal at high light intensity but decreased relative to the wild type as the light intensity used for growth decreased. Mutant RS104 lacked colored carotenoids and the B800-850 spectral complex, as well as the cognate apoproteins. This strain grew normally at high light intensity and, as with RS103, the growth rate decreased as the light intensity used for growth decreased. At very low light intensities, however, RS104 would grow, whereas RS103 would not. Structural analysis of these mutants as well as others revealed that the morphology of the intracytoplasmic membrane invaginations is associated with the presence or absence of the B800-850 complex as well as of carotenoids. A low-molecular-weight intracytoplasmic membrane polypeptide, which may play a role in B800-850 complex formation, is described, as is a 62,000-dalton polypeptide whose abundance is directly related to light intensity as well as the absence of either of the light-harvesting spectral complexes. These data, obtained from studies of mutant strains and the wild type, are discussed in light of photosynthetic membrane formation and the abundance of spectral complexes per unit area of membrane. Finally, a method for the bulk preparation of the B875 complex from wild-type strain 2.4.1 is reported.

摘要

对球形红细菌的两个在形成捕光光谱复合物方面存在缺陷的突变体进行了详细研究。突变体RS103缺乏B875光谱复合物,尽管存在大量水平的B875-α多肽(可能还有β多肽)。即使在高光强度下,RS103中的B800-850光谱复合物也会去阻遏,并且在高光强度下生长速率接近正常,但随着用于生长的光强度降低,相对于野生型其生长速率会下降。突变体RS104缺乏有色类胡萝卜素、B800-850光谱复合物以及同源载脂蛋白。该菌株在高光强度下正常生长,并且与RS103一样,随着用于生长的光强度降低,生长速率下降。然而,在非常低的光强度下,RS104能够生长,而RS103则不能。对这些突变体以及其他突变体的结构分析表明,胞内膜内陷的形态与B800-850复合物以及类胡萝卜素的存在与否相关。描述了一种可能在B800-

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e87f/210879/0fc3f4298e94/jbacter00181-0089-a.jpg

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