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首页> 外文期刊>Plant physiology >Red bell pepper chromoplasts exhibit in vitro import competency and membrane targeting of passenger proteins from the thylakoidal Sec and Delta pH pathways but not the chloroplast signal recognition particle pathway
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Red bell pepper chromoplasts exhibit in vitro import competency and membrane targeting of passenger proteins from the thylakoidal Sec and Delta pH pathways but not the chloroplast signal recognition particle pathway

机译:红柿子椒的质体表现出体外导入能力,并从类囊体Sec和Delta pH途径而不是叶绿体信号识别颗粒途径中对客体蛋白进行膜靶向

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Chloroplast to chromoplast development involves new synthesis and plastid localization of nuclear-encoded proteins, as well as changes in the organization of internal plastid membrane compartments. We have demonstrated that isolated red bell pepper (Capsicum annuum) chromoplasts contain the 75-kD component of the chloroplast outer envelope translocon (Toc75) and are capable of importing chloroplast precursors in an ATP-dependent fashion, indicating a functional general import apparatus. The isolated chromoplasts were able to further localize the 33- and 17-kD subunits of the photosystem II O inferior 2-evolution complex (OE33 and OE17, respectively), lumen-targeted precursors that utilize the thylakoidal Sec and Delta pH pathways, respectively, to the lumen of an internal membrane compartment. Chromoplasts contained the thylakoid Sec component protein, cpSecA, at levels comparable to chloroplasts. Routing of OE17 to the lumen was abolished by ionophores, suggesting that routing is dependent on a transmembrane Delta pH. The chloroplast signal recognition particle pathway precursor major photosystem II light-harvesting chlorophyll a/b protein failed to associate with chromoplast membranes and instead accumulated in the stroma following import. The Pftf (plastid fusion/translocation factor), a chromoplast protein, integrated into the internal membranes of chromoplasts during in vitro assays, and immunoblot analysis indicated that endogenous plastid fusion/translocation factor was also an integral membrane protein of chromoplasts. These data demonstrate that the internal membranes of chromoplasts are functional with respect to protein translocation on the thylakoid Sec and Delta pH pathways.
机译:叶绿体向色体的发展涉及核编码蛋白的新合成和质体定位,以及内部质体膜区室的组织变化。我们已经证明,孤立的红灯笼椒(Capsicum annuum)色质包含叶绿体外壳膜转座子(Toc75)的75 kD成分,并能够以ATP依赖的方式导入叶绿体前体,表明该装置具有功能。分离出的原生质体能够进一步定位光系统II O下2位进化复合体(分别为OE33和OE17)的33-kD亚基和17-kD亚基,这是分别利用类囊体Sec和Delta pH途径的以管腔为靶标的前体,到内部膜腔的内腔。叶绿体含有类囊体Sec成分蛋白cpSecA,其水平与叶绿体相当。离子载体消除了OE17进入腔的路径,这表明路径取决于跨膜Delta pH。叶绿体信号识别颗粒途径前体主要光系统II的光捕获叶绿素a / b蛋白未能与色膜结合,而是在导入后积累在基质中。 Pftf(质体融合/转运因子)是一种色体蛋白,在体外测定过程中整合到了质体的内膜中,免疫印迹分析表明,内源性质体融合/转运因子也是质体的完整膜蛋白。这些数据表明,相对于类囊体Sec和Delta pH途径上的蛋白质易位,色细胞的内膜是起作用的。

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