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在绿化的黄化小麦叶片和光照生长的小麦叶片的叶绿体生物发生过程中类囊体蛋白的磷酸化。

Phosphorylation of thylakoid proteins during chloroplast biogenesis in greening etiolated and light-grown wheat leaves.

机构信息

Department of Biology, University of Essex, CO4 3SQ, Colchester, Essex, UK.

出版信息

Photosynth Res. 1987 Jan;12(3):243-54. doi: 10.1007/BF00055124.

Abstract

Phosphorylation of polypeptides in isolated thylakoids was examined during chloroplast biogenesis in greening etiolated wheat leaves and 4 day-old wheat leaves grown under a diurnal light regime. At early stages of plastid development standard thylakoid preparations were heavily contaminated with nuclear proteins, which distorted the polypeptide phosphorylation profiles. Removal of contamination from membranes by sucrose density centrifugation demonstrated that the major membrane phosphoprotein in etioplasts was at 35 kDa. During etioplast greening a number of phosphoproteins appeared, of which the 25-27 kDa apoproteins of the light-harvesting chlorophylla/b protein complex associated with photosystem II (LHCII) became the most dominant. At the early stages of thylakoid development found at the base of the 4-day-old light grown leaf the LHCII apoproteins were evident as phosphoproteins; however the major phosphoprotein was polypeptide atca. 9kDA. Phosphorylation of both the LHCII apoproteins and the 9 kDa polypeptide in these thylakoids was not light-dependent. In the older thylakoids isolated from the leaf tip the LHCII apoproteins were the major phosphoproteins and their phosphorylation had become light-regulated; however phosphorylation of the 9 kDa polypeptide remained insensitive to light.

摘要

在绿色化的黄化小麦叶片和在昼夜光照条件下生长 4 天的小麦叶片的叶绿体发生过程中,研究了分离的类囊体中多肽的磷酸化。在叶绿体发育的早期阶段,标准类囊体制剂严重受到核蛋白的污染,这扭曲了多肽磷酸化图谱。通过蔗糖密度离心从膜中去除污染表明,质体中主要的膜磷蛋白位于 35 kDa。在质体绿化过程中出现了许多磷酸化蛋白,其中与光系统 II(LHCII)相关的光捕获叶绿素 a/b 蛋白复合物的 25-27 kDa 脱辅基蛋白成为最主要的。在 4 天龄光照生长叶片底部发现的早期类囊体发育阶段,LHCII 脱辅基蛋白作为磷酸化蛋白是明显的;然而,主要的磷蛋白是 atca.9kDA 多肽。这些类囊体中 LHCII 脱辅基蛋白和 9 kDa 多肽的磷酸化都不依赖于光。在从叶片顶端分离的较老的类囊体中,LHCII 脱辅基蛋白是主要的磷酸化蛋白,它们的磷酸化已成为光调控的;然而,9 kDa 多肽的磷酸化仍然对光不敏感。

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