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Mutational analysis of p80 coilin indicates a functional interaction between coiled bodies and the nucleolus

机译:p80卷材蛋白的突变分析表明卷材和核仁之间存在功能相互作用

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摘要

Coiled bodies are conserved subnuclear domains found in both plant and animal cells. They contain a subset of splicing snRNPs and several nucleolar antigens, including Nopp140 and fibrillarin. In addition, autoimmune patient sera have identified a coiled body specific protein, called p80 coilin. In this study we show that p80 coilin is ubiquitously expressed in human tissues. The full-length human p80 coilin protein correctly localizes in coiled bodies when exogenously expressed in HeLa cells using a transient transfection assay. Mutational analysis identifies separate domains in the p80 coilin protein that differentially affect its subnuclear localization. The data show that p80 coilin has a nuclear localization signal, but this is not sufficient to target the protein to coiled bodies. The results indicate that localization in coiled bodies is not determined by a simple motif analogous to the NLS motifs involved in nuclear import. A specific carboxy-terminal deletion in p80 coilin results in the formation of pseudo-coiled bodies that are unable to recruit splicing snRNPs. This causes a loss of endogenous coiled bodies. A separate class of mutant coilin proteins are shown to localize in fibrillar structures that surround nucleoli. These mutants also lead to loss of endogenous coiled bodies, produce a dramatic disruption of nucleolar architecture and cause a specific segregation of nucleolar antigens. The structural change in nucleoli is accompanied by the loss of RNA polymerase I activity. These data indicate that p80 coilin plays an important role in subnuclear organization and suggest that there may be a functional interaction between coiled bodies and nucleoli.
机译:盘绕体是在动植物细胞中都存在的保守的亚核域。它们包含一个剪接的snRNPs子集和几个核仁抗原,包括Nopp140和原纤维蛋白。此外,自身免疫性患者的血清还鉴定出一种卷曲的身体特异性蛋白,称为p80卷曲蛋白。在这项研究中,我们显示p80卷材在人体组织中普遍表达。当使用瞬时转染测定法在HeLa细胞中外源表达时,全长人p80卷积蛋白卷曲蛋白正确定位在卷曲体中。突变分析确定了p80卷积蛋白中的不同结构域,这些结构域差异性地影响其亚核的定位。数据显示p80卷取蛋白具有核定位信号,但这不足以将蛋白质靶向卷取体。结果表明,盘绕体中的定位不是由类似于涉及核输入的NLS基序的简单基序确定的。 p80卷材中特定的羧基末端缺失会导致伪螺旋体的形成,这些螺旋体无法募集剪接的snRNPs。这导致内生盘绕体的损失。已显示一类单独的突变卷曲素蛋白位于核仁周围的原纤维结构中。这些突变体还导致内源性螺旋状体的丢失,引起核仁结构的显着破坏,并引起核仁抗原的特异性分离。核仁的结构变化伴随着RNA聚合酶I活性的丧失。这些数据表明,p80卷取蛋白在亚核组织中起着重要作用,并暗示在卷取体和核仁之间可能存在功能相互作用。

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