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CHD1集中在果蝇多线染色体的间带和疏松区域。

CHD1 is concentrated in interbands and puffed regions of Drosophila polytene chromosomes.

作者信息

Stokes D G, Tartof K D, Perry R P

机构信息

Fox Chase Cancer Center, Philadelphia, PA 19111, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Jul 9;93(14):7137-42. doi: 10.1073/pnas.93.14.7137.

Abstract

Previously, we reported on the discovery and characterization of a mammalian chromatin-associated protein, CHD1 (chromo-ATPase/helicase-DNA-binding domain), with features that led us to suspect that it might have an important role in the modification of chromatin structure. We now report on the characterization of the Drosophila melanogaster CHD1 homologue (dCHD1) and its localization on polytene chromosomes. A set of overlapping cDNAs encodes an 1883-aa open reading frame that is 50% identical and 68% similar to the mouse CHD1 sequence, including conservation of the three signature domains for which the protein was named. When the chromo and ATPase/helicase domain sequences in various CHD1 homologues were compared with the corresponding sequences in other proteins, certain distinctive features of the CHD1 chromo and ATPase/helicase domains were revealed. The dCHD1 gene was mapped to position 23C-24A on chromosome 2L. Western blot analyses with antibodies raised against a dCHD1 fusion protein specifically recognized an approximately 210-kDa protein in nuclear extracts from Drosophila embryos and cultured cells. Most interestingly, these antibodies revealed that dCHD1 localizes to sites of extended chromatin (interbands) and regions associated with high transcriptional activity (puffs) on polytene chromosomes from salivary glands of third instar larvae. These observations strongly support the idea that CHD1 functions to alter chromatin structure in a way that facilitates gene expression.

摘要

此前,我们报道了一种哺乳动物染色质相关蛋白CHD1(染色体ATP酶/解旋酶-DNA结合结构域)的发现及特性,其特征使我们怀疑它可能在染色质结构修饰中发挥重要作用。我们现在报道果蝇CHD1同源物(dCHD1)的特性及其在多线染色体上的定位。一组重叠的cDNA编码一个1883个氨基酸的开放阅读框,该阅读框与小鼠CHD1序列有50%的同一性和68%的相似性,包括该蛋白命名所依据的三个标志性结构域的保守性。当将各种CHD1同源物中的染色体和ATP酶/解旋酶结构域序列与其他蛋白质中的相应序列进行比较时,揭示了CHD1染色体和ATP酶/解旋酶结构域的某些独特特征。dCHD1基因被定位到2号染色体左臂的23C-24A位置。用针对dCHD1融合蛋白产生的抗体进行的蛋白质印迹分析在果蝇胚胎和培养细胞的核提取物中特异性识别出一种约210 kDa的蛋白质。最有趣的是,这些抗体显示dCHD1定位于三龄幼虫唾液腺多线染色体上延伸染色质的位点(间带)和与高转录活性相关的区域(胀泡)。这些观察结果有力地支持了CHD1以促进基因表达的方式改变染色质结构的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ca1/38949/7351c8d7aa47/pnas01518-0304-a.jpg

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