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光系统II的D1蛋白在体内光照下的降解:涉及裂解或分子间交联的两种不同途径。

Degradation of the D1 protein of photosystem II under illumination in vivo: two different pathways involving cleavage or intermolecular cross-linking.

作者信息

Mizusawa Naoki, Tomo Tatsuya, Satoh Kimiyuki, Miyao Mitsue

机构信息

Photosynthesis Laboratory, National Institute of Agrobiological Sciences, Tsukuba 305-8602, Japan.

出版信息

Biochemistry. 2003 Aug 26;42(33):10034-44. doi: 10.1021/bi0300534.

Abstract

The D1 protein of the photosystem II reaction center turns over the most rapidly of all the proteins of the thylakoid membrane under illumination in vivo. In vitro, the D1 protein sustained cleavage in a surface-exposed loop (DE loop) or cross-linking with another reaction center protein, the D2 protein or cytochrome b(559), under illumination. We found that the D1 protein was damaged in essentially the same way in vivo, although the resultant fragments and cross-linked adducts barely accumulated due to digestion by proteases. In vitro studies detected a novel stromal protease(s) that digested the adducts but not the monomeric D1 protein. These observations suggest that, in addition to cleavage, the cross-linking reactions themselves are processes involved in complete degradation of the D1 protein in vivo. Peptide mapping experiments located the cross-linking sites with the D2 protein among residues 226-244, which includes the cross-linking site with cytochrome b(559) [Barbato, R., et al. (1995) J. Biol. Chem. 270, 24032-24037], in the N-terminal part of the DE loop, while N-terminal amino acid sequencing of the fragment located the cleavage site around residue 260 in the C-terminal part of the loop. We propose a model explaining the occurrence of simultaneous cleavage and cross-linking and discuss the mechanisms of complete degradation of the D1 protein in vivo.

摘要

在体内光照条件下,光系统II反应中心的D1蛋白是类囊体膜所有蛋白中周转最快的。在体外,光照时D1蛋白在一个表面暴露环(DE环)中持续裂解,或与另一个反应中心蛋白D2蛋白或细胞色素b(559)发生交联。我们发现,D1蛋白在体内的受损方式基本相同,尽管由于蛋白酶的消化作用,产生的片段和交联加合物几乎没有积累。体外研究检测到一种新型的基质蛋白酶,它能消化加合物,但不能消化单体D1蛋白。这些观察结果表明,除了裂解外,交联反应本身也是体内D1蛋白完全降解过程的一部分。肽图谱实验确定了与D2蛋白的交联位点位于226 - 244位残基之间,该区域包括与细胞色素b(559)的交联位点[Barbato, R.,等人(1995) J. Biol. Chem. 270, 24032 - 24037],在DE环的N端部分,而片段的N端氨基酸测序确定裂解位点在环的C端部分的260位残基附近。我们提出了一个解释同时发生裂解和交联现象的模型,并讨论了体内D1蛋白完全降解的机制。

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