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DPY-27:一种染色体凝聚蛋白同源物,通过与X染色体结合来调节秀丽隐杆线虫的剂量补偿。

DPY-27:a chromosome condensation protein homolog that regulates C. elegans dosage compensation through association with the X chromosome.

作者信息

Chuang P T, Albertson D G, Meyer B J

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Cell. 1994 Nov 4;79(3):459-74. doi: 10.1016/0092-8674(94)90255-0.

Abstract

dpy-27 is an essential dosage compensation gene that acts to reduce expression of both hermaphrodite X chromosomes. The DPY-27 protein becomes specifically localized to the X chromosomes of wild-type XX embryos, but remains diffusely distributed throughout the nuclei of male (XO) embryos. In xol-1 mutant XO embryos that activate the XX mode of dosage compensation and die from inappropriately low X chromosome transcript levels, DPY-27 becomes localized to X. Therefore, sex specificity of the dosage compensation process is regulated at the step of DPY-27 X chromosome localization. DPY-27 exhibits striking similarity to proteins required for assembly and structural maintenance of Xenopus chromosomes in vitro and for segregation of yeast chromosomes in vivo. These findings suggest a link between global regulation of gene expression and higher order chromosome structure. We propose that DPY-27 implements dosage compensation by condensing the chromatin structure of X in a manner that causes general reduction of X chromosome expression.

摘要

dpy-27是一个必需的剂量补偿基因,其作用是降低雌雄同体两条X染色体的表达。DPY-27蛋白特异性定位于野生型XX胚胎的X染色体上,但在雄性(XO)胚胎的细胞核中呈弥散分布。在激活XX剂量补偿模式并因X染色体转录水平过低而死亡的xol-1突变体XO胚胎中,DPY-27定位于X染色体。因此,剂量补偿过程的性别特异性在DPY-27 X染色体定位步骤受到调控。DPY-27与体外非洲爪蟾染色体组装和结构维持以及体内酵母染色体分离所需的蛋白质具有显著相似性。这些发现提示了基因表达的全局调控与高阶染色体结构之间的联系。我们提出,DPY-27通过凝聚X染色体的染色质结构来实现剂量补偿,从而导致X染色体表达普遍降低。

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