首页> 外文期刊>Molecular and Cellular Biology >Formation of irregular giant peroxisomes by overproduction of the crystalloid core protein methanol oxidase in the methylotrophic yeast Hansenula polymorpha.
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Formation of irregular giant peroxisomes by overproduction of the crystalloid core protein methanol oxidase in the methylotrophic yeast Hansenula polymorpha.

机译:甲基营养酵母多形汉逊酵母中晶体核心蛋白甲醇氧化酶的过量产生形成不规则的巨大过氧化物酶体。

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The crystalloid core in peroxisomes of the methylotrophic yeast Hansenula polymorpha is composed of the octameric flavoprotein methanol oxidase (MOX). We transformed yeast cells with a high-copy-number vector harboring the cloned MOX gene in order to study the effects on regulation, protein import, and peroxisome biosynthesis. In transformed wild-type cells, no increase in expression of MOX was detectable. Mutants defective in MOX activity were isolated by a specific selection procedure. Two structural MOX mutants are described that allow overproduction of a fully active enzyme upon transformation at quantities of about two-thirds of the total cellular protein. The overproduced protein was imported into peroxisomes, altering their morphology (in thin sections) and stability in cell lysates; the organelles showed a tendency to form rectangular bodies, and their lumina were completely filled with the crystalloid structure. The overall size of the peroxisomes was increased severalfold in comparison with the size of nontransformed yeast cells. The results suggest high capacities of peroxisomal growth conferred by overproduction and import of a single protein.
机译:甲基营养型酵母多形汉逊酵母过氧化物酶体的晶体核心由八聚体黄素蛋白甲醇氧化酶(MOX)组成。为了研究对调节,蛋白质导入和过氧化物酶体生物合成的影响,我们用具有克隆的MOX基因的高拷贝数载体转化了酵母细胞。在转化的野生型细胞中,未检测到MOX表达的增加。通过特定的选择程序分离出MOX活性有缺陷的突变体。描述了两个结构性MOX突变体,它们允许在转化时过量生产完全活性的酶,其量约为总细胞蛋白的三分之二。过量生产的蛋白质被输入到过氧化物酶体中,改变了它们的形态(在薄片中)和细胞裂解物中的稳定性。细胞器显示出形成矩形体的趋势,并且它们的腔被晶体结构完全填充。与未转化的酵母细胞的大小相比,过氧化物酶体的总大小增加了几倍。结果表明过高的过氧化物酶体生长能力是由单个蛋白质的过量生产和进口所赋予的。

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