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叶绿体前体蛋白在离体豌豆叶绿体中竞争形成早期输入中间体。

Chloroplast precursor proteins compete to form early import intermediates in isolated pea chloroplasts.

作者信息

Row P E, Gray J C

机构信息

Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EA, UK.

出版信息

J Exp Bot. 2001 Jan;52(354):47-56.

Abstract

In order to ascertain whether there is one site for the import of precursor proteins into chloroplasts or whether different precursor proteins are imported via different import machineries, chloroplasts were incubated with large quantities of the precursor of the 33 kDa subunit of the oxygen-evolving complex (pOE33) or the precursor of the light-harvesting chlorophyll a/b-binding protein (pLHCP) and tested for their ability to import a wide range of other chloroplast precursor proteins. Both pOE33 and pLHCP competed for import into chloroplasts with precursors of the stromally-targeted small subunit of Rubisco (pSSu), ferredoxin NADP(+) reductase (pFNR) and porphobilinogen deaminase; the thylakoid membrane proteins LHCP and the Rieske iron-sulphur protein (pRieske protein); ferrochelatase and the gamma subunit of the ATP synthase (which are both associated with the thylakoid membrane); the thylakoid lumenal protein plastocyanin and the phosphate translocator, an integral membrane protein of the inner envelope. The concentrations of pOE33 or pLHCP required to cause half-maximal inhibition of import ranged between 0.2 and 4.9 microM. These results indicate that all of these proteins are imported into the chloroplast by a common import machinery. Incubation of chloroplasts with pOE33 inhibited the formation of early import intermediates of pSSu, pFNR and pRieske protein.

摘要

为了确定前体蛋白进入叶绿体是否存在单一的位点,或者不同的前体蛋白是否通过不同的转运机制导入,将叶绿体与大量的放氧复合体33 kDa亚基的前体(pOE33)或捕光叶绿素a/b结合蛋白的前体(pLHCP)一起温育,并测试它们导入多种其他叶绿体前体蛋白的能力。pOE33和pLHCP都与核酮糖-1,5-二磷酸羧化酶小亚基(pSSu)、铁氧还蛋白NADP(+)还原酶(pFNR)和胆色素原脱氨酶的基质靶向前体竞争进入叶绿体;类囊体膜蛋白LHCP和 Rieske 铁硫蛋白(pRieske蛋白);亚铁螯合酶和ATP合酶的γ亚基(两者都与类囊体膜相关);类囊体腔蛋白质体蓝素和磷酸转运体,内膜的一种整合膜蛋白。引起导入半最大抑制所需的pOE33或pLHCP浓度在0.2至4.9 microM之间。这些结果表明,所有这些蛋白质都是通过共同的转运机制导入叶绿体中的。用pOE33温育叶绿体抑制了pSSu、pFNR和pRieske蛋白早期导入中间体的形成。

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