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眼虫捕光叶绿素a/b结合蛋白的多蛋白前体在叶绿体导入和多蛋白加工之前被转运到高尔基体。

The polyprotein precursor to the Euglena light-harvesting chlorophyll a/b-binding protein is transported to the Golgi apparatus prior to chloroplast import and polyprotein processing.

作者信息

Sulli C, Schwartzbach S D

机构信息

School of Biological Sciences, University of Nebraska, Lincoln 68588, USA.

出版信息

J Biol Chem. 1995 Jun 2;270(22):13084-90. doi: 10.1074/jbc.270.22.13084.

Abstract

The major Euglena thylakoid protein, the light harvesting chlorophyll a/b-binding protein of photosystem II (pLHCPII) is synthesized in the cytoplasm as a polyprotein precursor composed of a 141 amino acid presequence containing a signal peptide domain followed by eight mature LHCPIIs covalently linked by a decapeptide. To determine the transport route from cytoplasm to chloroplast and the site of polyprotein processing, Euglena was pulse labeled with [35S]sulfate, organelles separated on sucrose gradients, and pLHCPII and LHCPII immunoprecipitated and separated on SDS gels. After a 10-min pulse, the pLHCPII polyprotein was found in the endoplasmic reticulum (ER) and Golgi apparatus. LHCPII was undetectable after a 10-min pulse consistent with the 20-min half-life for pLHCPII processing. When pulse-labeled cells were chased for 20 or 40 min with unlabeled sulfate, the fraction of pLHCPII in the ER decreased, and the fraction in the Golgi apparatus increased. LHCPII appeared only in thylakoids and chloroplasts, never in the ER or Golgi apparatus. Na2CO3 extraction, a treatment that releases soluble but not integral membrane proteins, did not remove pLHCPII from ER and Golgi membranes. Trypsin digestion of ER and Golgi membranes produced 4 pLHCPII membrane protected fragments. The Euglena pLHCPII polyprotein is transported as an integral membrane protein from the ER to the Golgi apparatus and from the Golgi apparatus to the chloroplast. Polyprotein processing appears to occur during or soon after chloroplast import of the membrane-bound precursor.

摘要

眼虫主要类囊体蛋白,即光系统II的捕光叶绿素a/b结合蛋白(pLHCPII),在细胞质中作为一种多蛋白前体合成,该前体由一个含信号肽结构域的141个氨基酸的前序列组成,其后跟着8个通过十肽共价连接的成熟LHCPII。为了确定从细胞质到叶绿体的运输途径以及多蛋白加工位点,用眼虫进行[35S]硫酸盐脉冲标记,在蔗糖梯度上分离细胞器,对pLHCPII和LHCPII进行免疫沉淀并在SDS凝胶上分离。脉冲10分钟后,在内质网(ER)和高尔基体中发现了pLHCPII多蛋白。脉冲10分钟后未检测到LHCPII,这与pLHCPII加工的20分钟半衰期一致。当用未标记的硫酸盐对脉冲标记的细胞进行20或40分钟的追踪时,ER中pLHCPII的比例下降,高尔基体中的比例增加。LHCPII仅出现在类囊体和叶绿体中,从未出现在ER或高尔基体中。Na2CO3提取是一种释放可溶性而非整合膜蛋白的处理方法,它并未从ER和高尔基体膜中去除pLHCPII。对ER和高尔基体膜进行胰蛋白酶消化产生了4个pLHCPII膜保护片段。眼虫pLHCPII多蛋白作为一种整合膜蛋白从ER运输到高尔基体,再从高尔基体运输到叶绿体。多蛋白加工似乎发生在膜结合前体导入叶绿体期间或之后不久。

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