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SDC-3协调线虫X染色体上剂量补偿复合体的组装。

SDC-3 coordinates the assembly of a dosage compensation complex on the nematode X chromosome.

作者信息

Davis T L, Meyer B J

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720-3204, USA.

出版信息

Development. 1997 Mar;124(5):1019-31. doi: 10.1242/dev.124.5.1019.

Abstract

X chromosome expression in C. elegans is controlled by a chromosome-wide regulatory process called dosage compensation that specifically reduces by half the level of transcripts made from each hermaphrodite X chromosome. This process equalizes X expression between the sexes (XX hermaphrodites and XO males), despite their two-fold difference in X chromosome dose, and thereby prevents sex-specific lethality. Dosage compensation is achieved by a protein complex that associates with X in a sex-specific fashion to modulate gene expression. SDC-3, a protein that coordinately controls both sex determination and dosage compensation, activates dosage compensation by directing the dosage compensation protein complex to the hermaphrodite X chromosomes. We show that SDC-3 coordinates this assembly through its own sex-specific association with X. SDC-3 in turn requires other members of the dosage compensation gene hierarchy for its stability and its X localization. In addition, SDC-3 requires its own zinc finger motifs and an amino-terminal region for its X association. Our experiments suggest the possible involvement of zinc finger motifs in X chromosome recognition and the amino-terminal region in interactions with other dosage compensation proteins.

摘要

秀丽隐杆线虫中X染色体的表达受一种全染色体范围的调控过程控制,该过程称为剂量补偿,它能特异性地将每个雌雄同体X染色体产生的转录本水平减半。这个过程使两性(XX雌雄同体和XO雄性)之间的X表达趋于平衡,尽管它们在X染色体剂量上存在两倍的差异,从而防止了性别特异性致死。剂量补偿是通过一种蛋白质复合体实现的,该复合体以性别特异性方式与X染色体结合以调节基因表达。SDC-3是一种协调控制性别决定和剂量补偿的蛋白质,它通过将剂量补偿蛋白复合体导向雌雄同体的X染色体来激活剂量补偿。我们发现SDC-3通过其自身与X染色体的性别特异性结合来协调这种组装。反过来,SDC-3的稳定性及其在X染色体上的定位需要剂量补偿基因层级中的其他成员。此外,SDC-3与X染色体结合需要其自身的锌指基序和一个氨基末端区域。我们的实验表明锌指基序可能参与X染色体识别,而氨基末端区域可能参与与其他剂量补偿蛋白的相互作用。

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