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细菌光敏色素是利用藻胆素发色团的光致变色组氨酸激酶。

Bacteriophytochromes are photochromic histidine kinases using a biliverdin chromophore.

作者信息

Bhoo S H, Davis S J, Walker J, Karniol B, Vierstra R D

机构信息

Cellular and Molecular Biology Program, Department of Horticulture, University of Wisconsin-Madison, 1575 Linden Drive, Madison, Wisconsin 53706, USA.

出版信息

Nature. 2001 Dec 13;414(6865):776-9. doi: 10.1038/414776a.

Abstract

Phytochromes comprise a principal family of red/far-red light sensors in plants. Although phytochromes were thought originally to be confined to photosynthetic organisms, we have recently detected phytochrome-like proteins in two heterotrophic eubacteria, Deinococcus radiodurans and Pseudomonas aeruginosa. Here we show that these form part of a widespread family of bacteriophytochromes (BphPs) with homology to two-component sensor histidine kinases. Whereas plant phytochromes use phytochromobilin as the chromophore, BphPs assemble with biliverdin, an immediate breakdown product of haem, to generate photochromic kinases that are modulated by red and far-red light. In some cases, a unique haem oxygenase responsible for the synthesis of biliverdin is part of the BphP operon. Co-expression of this oxygenase with a BphP apoprotein and a haem source is sufficient to assemble holo-BphP in vivo. Both their presence in many diverse bacteria and their simplified assembly with biliverdin suggest that BphPs are the progenitors of phytochrome-type photoreceptors.

摘要

光敏色素是植物中主要的红光/远红光光传感器家族。尽管光敏色素最初被认为仅存在于光合生物中,但我们最近在两种异养真细菌——耐辐射球菌和铜绿假单胞菌中检测到了类光敏色素蛋白。在此我们表明,这些蛋白构成了一个广泛存在的细菌光敏色素(BphPs)家族的一部分,该家族与双组分传感组氨酸激酶具有同源性。植物光敏色素使用藻胆素作为发色团,而BphPs与血红素的直接分解产物胆绿素组装在一起,生成受红光和远红光调节的光致变色激酶。在某些情况下,负责胆绿素合成的独特血红素加氧酶是BphP操纵子的一部分。这种加氧酶与BphP脱辅基蛋白和血红素来源共同表达足以在体内组装全BphP。它们在许多不同细菌中的存在以及与胆绿素的简化组装表明,BphPs是光敏色素型光感受器的祖先。

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