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细胞色素c6转录调控中两个铜滴定成分之间的动态相互作用。

Dynamic interplay between two copper-titrating components in the transcriptional regulation of cyt c6.

作者信息

Merchant S, Hill K, Howe G

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles 90024.

出版信息

EMBO J. 1991 Jun;10(6):1383-9. doi: 10.1002/j.1460-2075.1991.tb07658.x.

Abstract

The algal plastidic cytochrome c (cyt c6) is a biochemical equivalent of the copper-containing protein plastocyanin in photosynthetic electron transfer. But generally, cyt c6 accumulates and functions only under conditions (e.g. Cu-deficiency) where holoplastocyanin cannot be synthesized. In studying the regulation of Chlamydomonas reinhardtii cyt c6 expression by Cu we have determined that repression of cyt c6 accumulation occurs at the transcriptional level, and specifically in response to Cu as the metal ion regulator. Complete and sustained repression of cyt c6 transcription requires approximately 9 x 10(6) Cu ions in the medium/cell. Based on the estimated plastocyanin content of algal cells (8 x 10(6) molecules/cell) and the observation that lower ratios of Cu per cell result in only transient repression of cyt c6 transcription, we propose that Cu-dependent transcriptional repression of the gene encoding cyt c6 requires a Cu-binding factor which is titrated by Cu only after the alternate electron transfer catalyst, plastocyanin, has accumulated to the stoichiometry required for photosynthesis. The precise and highly metal-specific, autoregulatory control of cyt c6 levels--directly by Cu, and indirectly by holoplastocyanin--is in keeping with the functional role of cyt c6 as an alternate, although perhaps less preferred, electron transfer catalyst.

摘要

藻类质体细胞色素c(细胞色素c6)在光合电子传递中是含铜蛋白质体蓝素的生化等效物。但一般来说,细胞色素c6仅在无法合成全质体蓝素的条件下(如铜缺乏)积累并发挥作用。在研究莱茵衣藻细胞色素c6表达受铜调控的过程中,我们确定细胞色素c6积累的抑制发生在转录水平,且具体是对作为金属离子调节因子的铜作出反应。细胞色素c6转录的完全且持续抑制需要培养基/细胞中约9×10⁶个铜离子。基于藻类细胞质体蓝素含量的估计值(8×10⁶个分子/细胞)以及每个细胞铜比例较低仅导致细胞色素c6转录短暂抑制的观察结果,我们提出细胞色素c6编码基因的铜依赖性转录抑制需要一种铜结合因子,该因子只有在替代电子传递催化剂质体蓝素积累到光合作用所需的化学计量后才会被铜滴定。细胞色素c6水平精确且高度金属特异性的自动调节控制——直接由铜控制,间接由全质体蓝素控制——与细胞色素c6作为一种替代的(尽管可能不太受青睐)电子传递催化剂的功能作用相符。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/013c/452799/9a56f50c4e84/emboj00104-0087-a.jpg

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