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球形红杆菌和 trichosporium甲基弯曲菌固氮酶的氨关闭:无铁蛋白修饰的证据。 (注:这里的“trichosporium”可能有误,原文献中可能是“Methylosinus trichosporium”完整的是甲基孢囊菌属,但按照要求准确翻译了提供的内容)

Ammonia switch-off of nitrogenase from Rhodobacter sphaeroides and Methylosinus trichosporium: no evidence for Fe protein modification.

作者信息

Yoch D C, Li J D, Hu C Z, Scholin C

机构信息

Department of Biology, University of South Carolina, Columbia 29208.

出版信息

Arch Microbiol. 1988 May;150(1):1-5. doi: 10.1007/BF00409708.

Abstract

In vivo switch-off of nitrogenase activity by NH4+ is a reversible process in Rhodobacter sphaeroides and Methylosinus trichosporium OB3b. The same pattern of switch-off in Rhodospirillum rubrum is explained by ADP-ribosylation of one of the Fe protein subunits, however, no evidence of covalent modification could be found in the subunits from either R. sphaeroides or M. trichosporium. Fe protein subunits from these organisms showed no variant behaviour on SDS-PAGE, nor were they 32P-labeled following switch-off. These observations suggest either that the attachment of the modifying group to the Fe protein in these organisms is quite labile and does not survive in vitro manipulation, or that the mechanism of switch-off is different than that seen in Rhodospirillum.

摘要

在球形红杆菌和嗜甲基生丝孢杆菌OB3b中,NH₄⁺对固氮酶活性的体内关闭是一个可逆过程。在深红红螺菌中相同的关闭模式是由铁蛋白亚基之一的ADP核糖基化来解释的,然而,在球形红杆菌或嗜甲基生丝孢杆菌的亚基中均未发现共价修饰的证据。这些生物体的铁蛋白亚基在SDS-PAGE上没有表现出变异行为,在关闭后也没有被³²P标记。这些观察结果表明,要么是这些生物体中铁蛋白上修饰基团的附着相当不稳定,在体外操作中无法存活,要么是关闭机制与深红红螺菌中所见的不同。

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