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首页> 外文期刊>Biochemistry >Phosphorylation-Dephosphorylation of Light-Harvesting Complex II as a Response to Variation in Irradiance Is Thiol Sensitive and Thylakoid Sufficient: Modulation of the Sensitivity of the Phenomenon by a Peripheral Component.
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Phosphorylation-Dephosphorylation of Light-Harvesting Complex II as a Response to Variation in Irradiance Is Thiol Sensitive and Thylakoid Sufficient: Modulation of the Sensitivity of the Phenomenon by a Peripheral Component.

机译:作为对辐照度变化的反应作为对辐照度的响应的磷酸化 - 磷酸化是硫醇敏感性和囊嘌呤足以通过外围组分调节现象的敏感性。

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Downregulation of phosphorylation of chlorophyll a/b-binding proteins (LHCII) of the photosystem II at high irradiance could only be demonstrated with leaf discs but not in isolated thylakoids. The present view suggests this phenomenon to be regulated by stromal thioredoxin. Here, we show that high-light inactivation of LHCII phosphorylation can be reproduced in isolated thylakoids and have explained the apparent absence of inactivation in vitro to be due to the derepressed activity of a peripheral kinase. We investigated this phenomenon with Arachis hypogea thylakoids prepared with (Th:A) or without (Th:B) tricine, where tricine is known for removing peripheral proteins from thylakoids. While LHCII remained phosphorylated at high irradiance in Th:B, the response of Th:A mimicked Arachis leaflets where LHCII was transiently phosphorylated with irradiance. LHCII phosphorylation in Th:A was sensitive to thiol reducing conditions, but in Th:B, the phenomenon became insensitive to thiol reduction followingillumination. Washing Th:B with tricine made them resemble Th:A, and conversely, Th:A reconstituted with the Tricine extract resembled Th:B with respect to both irradiance response and thiol sensitivity. In vitro phosphorylation reactions indicated a thiol insensitive kinase activity to be present in the Tricine extract that was capable of phosphorylating histone H1 as well as purified LHCII. This peripherally associated kinase activity explained the sustenance of LHCII phosphorylation as well as its thiol insensitivity at high irradiance in Th:B thylakoids. Contrary to the current view, our results clearly show that irradiance dependent phosphorylation and dephosphorylation of LHCII is a thylakoid sufficient phenomenon, although it remained open to regulation by thiol redox state modulation.
机译:在高辐照度下的光系统II的叶绿素A / B结合蛋白(LHCII)的磷酸化下调只能用叶片表来证明,但不在分离的类囊体中进行。本发明的视图表明这种现象是由基质硫氧嗪调节的。这里,我们表明,LHCII磷酸化的高光灭活可以在分离的类旁骨中再现,并已经解释了体外灭活的明显不存在,这是由于外周激酶的大规模活性。我们调查了使用(Th:a)或没有(th:b)三曲程制备的arachis healogea囊体的这种现象,其中众所周知三序用于从囊体中除去外周蛋白。虽然LHCII在TH的高辐照度下保持磷酸化,而B的高辐照度,TH的响应:模仿的香菇叶片,其中LHCII瞬时磷酸化与辐照度瞬时磷酸化。 LHCII磷酸化在TH:A对硫醇还原条件敏感,但在TH:B中,该现象对硫醇的硫醇降低不敏感。洗涤Th:B使用Tricine使它们类似于TH:A,并相反,与Tricine提取物重构类似于辐照度响应和硫醇敏感性。体外磷酸化反应表明托硫醇不敏感激酶活性存在于能够磷酸化组蛋白H1以及纯化的LHCII中的三仙提取物中存在。该外周相关的激酶活性解释了LHCII磷酸化的寄生,以及TH以下高辐照度下的硫醇内敏感性。与目前的观点相反,我们的结果清楚地表明,LHCII的辐照度依赖性磷酸化和去磷酸化是一种基因醇的足够现象,尽管通过硫醇氧化还原状态调节仍然对调节保持开放。

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