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参与水稻胚乳组织中醇溶蛋白mRNA定位于蛋白体的细胞骨架相关结合位点的证据。

Evidence for a Cytoskeleton-Associated Binding Site Involved in Prolamine mRNA Localization to the Protein Bodies in Rice Endosperm Tissue.

作者信息

Muench DG, Wu Y, Coughlan SJ, Okita TW

机构信息

Institute of Biological Chemistry, Washington State University, Pullman, Washington 99164-6340 (D.G.M., Y.W., T.W.O.)

出版信息

Plant Physiol. 1998 Feb 1;116(2):559-69. doi: 10.1104/pp.116.2.559.

Abstract

Previous studies have demonstrated that the mRNAs encoding the prolamine and glutelin storage proteins are localized to morphologically distinct membranes of the endoplasmic reticulum (ER) complex in developing rice (Oryza sativa L.) endosperm cells. To gain insight about this mRNA localization process, we investigated the association of prolamine polysomes on the ER that delimit the prolamine protein bodies (PBs). The bulk of the prolamine polysomes were resistant to extraction by 1% Triton X-100 either alone or together with puromycin, which suggests that these translation complexes are anchored to the PB surface through a second binding site in addition to the well-characterized ribosome-binding site of the ER-localized protein translocation complex. Suppression of translation initiation shows that these polysomes are bound through the mRNA, as shown by the simultaneous increase in the amounts of ribosome-free prolamine mRNAs and decrease in prolamine polysome content associated with the membrane-stripped PB fraction. The prolamine polysome-binding activity is likely to be associated with the cytoskeleton, based on the association of actin and tubulin with the prolamine polysomes and PBs after sucrose-density centrifugation.

摘要

先前的研究表明,编码醇溶蛋白和谷蛋白贮藏蛋白的mRNA定位于发育中的水稻(Oryza sativa L.)胚乳细胞内质网(ER)复合体形态上不同的膜上。为深入了解这种mRNA定位过程,我们研究了界定醇溶蛋白蛋白体(PBs)的内质网上醇溶蛋白多核糖体的关联。大部分醇溶蛋白多核糖体单独用1% Triton X-100或与嘌呤霉素一起处理时都能抵抗提取,这表明这些翻译复合体除了通过内质网定位的蛋白质转运复合体中特征明确的核糖体结合位点外,还通过第二个结合位点锚定在蛋白体表面。翻译起始的抑制表明这些多核糖体通过mRNA结合,这表现为与膜剥离的蛋白体部分相关的无核糖体醇溶蛋白mRNA量同时增加以及醇溶蛋白多核糖体含量减少。基于蔗糖密度离心后肌动蛋白和微管蛋白与醇溶蛋白多核糖体和蛋白体的关联,醇溶蛋白多核糖体结合活性可能与细胞骨架相关。

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