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果蝇Mi-2 ATP酶的遗传学特征分析

Genetic characterization of Drosophila Mi-2 ATPase.

作者信息

Khattak Shahryar, Lee Bo Ra, Cho Sung Hoon, Ahnn Joohong, Spoerel Nikolaus A

机构信息

Department of Life Science, Kwangju Institute of Science and Technology, Kwangju, South Korea.

出版信息

Gene. 2002 Jun 26;293(1-2):107-14. doi: 10.1016/s0378-1119(02)00698-4.

Abstract

Mammalian Mi-2, an auto-antigen for dermatomyositis, is known to be an adenosine triphosphate (ATP)-dependent nucleosome remodelling factor. The Drosophila homologue of Mi-2 (dMi-2) gene is located at 76D5-6 on the left arm of the third chromosome and is transcribed into two alternate transcripts (dMi-2a and dMi-2b). Both transcripts are present at high levels in the ovary and during the first 8 h of embryogenesis when detected by Northern blot analysis. The localization of protein was nuclear, which is consistent with its proposed function as a component of the chromatin remodelling complex. Several lines of recessive mutants including mutations in dMi-2 were isolated and classified into four different complementation groups. Four alleles of dMi-2 mutants were further characterized in molecular nature; dMi-2(BL1) was found to have a mutation in the ATP-binding motif of the ATPase domain, dMi-2(BL7) in the core histidine of the first plant homeodomain zinc finger and dMi-2(BL12) in a conserved serine in the chromodomain. On the other hand, dMi-2(BL3) did not have any change in the coding region. The expression pattern of dMi-2 and the embryonic lethal phenotypes of mutants indicate that dMi-2 is essential for embryonic development in Drosophila melanagaster.

摘要

哺乳动物的Mi-2是皮肌炎的自身抗原,已知它是一种依赖三磷酸腺苷(ATP)的核小体重塑因子。Mi-2(dMi-2)基因的果蝇同源物位于第三条染色体左臂的76D5-6位置,转录形成两种可变转录本(dMi-2a和dMi-2b)。通过Northern印迹分析检测发现,这两种转录本在卵巢以及胚胎发育的最初8小时内均高水平存在。蛋白质的定位是在细胞核内,这与其作为染色质重塑复合体组成成分的假定功能相一致。分离出了包括dMi-2突变在内的几类隐性突变体,并将其分为四个不同的互补群。对dMi-2突变体的四个等位基因进行了进一步的分子特性分析;发现dMi-2(BL1)在ATP酶结构域的ATP结合基序中有突变,dMi-2(BL7)在第一个植物同源结构域锌指的核心组氨酸中有突变,dMi-2(BL12)在染色质结构域的一个保守丝氨酸中有突变。另一方面,dMi-2(BL3)的编码区没有任何变化。dMi-2的表达模式以及突变体的胚胎致死表型表明,dMi-2对黑腹果蝇的胚胎发育至关重要。

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