首页> 美国卫生研究院文献>Plant Physiology >Light-harvesting chlorophyll a/b-binding protein inserted into isolated thylakoids binds pigments and is assembled into trimeric light-harvesting complex.
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Light-harvesting chlorophyll a/b-binding protein inserted into isolated thylakoids binds pigments and is assembled into trimeric light-harvesting complex.

机译:插入分离的类囊体中的集光叶绿素a / b结合蛋白与色素结合并组装成三聚体集光复合物。

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摘要

The light-harvesting chlorophyll a/b-binding protein (LHCP) is largely protected against protease (except for about 1 kD on the N terminus) in the thylakoid membrane; this protease resistance is often used to assay successful insertion of LHCP into isolated thylakoids in vitro. In this paper we show that this protease resistance is exhibited by trimeric light-harvesting complex of photosystem II (LHCII) but not by monomeric LHCII in which about 5 kD on the N terminus of LHCP are cleaved off by protease. When a mutant version of LHCP that is unable to trimerize in an in vitro reconstitution assay is inserted into isolated thylakoids, it gives rise to only the shorter protease digestion product indicative of monomeric LHCII. We conclude that more of the N-terminal domain of LHCP is shielded in trimeric than in monomeric LHCII and that this difference in protease sensitivity can be used to distinguish between LHCP assembled in LHCII monomers or trimers. The data presented prove that upon insertion of LHCP into isolated thylakoids at least part of the protein spontaneously binds pigments to form LHCII, which then is assembled in trimers. The dependence of the protease sensitivity of thylakoid-inserted LHCP on the oligomerization state of the newly formed LHCII justifies caution when using a protease assay to verify successful insertion of LHCP into the membrane.
机译:收集光的叶绿素a / b结合蛋白(LHCP)在类囊体膜中受到了很大的保护,可抵抗蛋白酶(N端约1 kD除外);这种蛋白酶抗性通常用于测定LHCP在体外成功插入分离的类囊体的能力。在本文中,我们表明该蛋白酶抗性是由光系统II(LHCII)的三聚体光捕获复合物表现出来的,而不是由单体LHCII表现出来的,其中LHCP N末端约5 kD被蛋白酶切割掉。当在体外重构测定中无法三聚化的LHCP突变体版本插入分离的类囊体中时,它仅产生较短的表示单体LHCII的蛋白酶消化产物。我们得出的结论是,三聚体比单体LHCII具有更多的LHCP N末端结构域,并且蛋白酶敏感性的这种差异可用于区分LHCII单体或三聚体中组装的LHCP。呈现的数据证明,将LHCP插入分离的类囊体中后,至少有一部分蛋白质会自发结合色素形成LHCII,然后将其组装在三聚体中。当使用蛋白酶测定法验证将LHCP成功插入膜中时,类囊体插入的LHCP的蛋白酶敏感性对新形成的LHCII的低聚状态的依赖性是谨慎的。

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