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在果蝇的复制过程中,Myc 定位于组蛋白基因座体。

Myc localizes to histone locus bodies during replication in Drosophila.

机构信息

Department of Biology, University of North Carolina at Charlotte, Charlotte, North Carolina, United States of America.

出版信息

PLoS One. 2011;6(8):e23928. doi: 10.1371/journal.pone.0023928. Epub 2011 Aug 23.

Abstract

Myc is an important protein at the center of multiple pathways required for growth and proliferation in animals. The absence of Myc is lethal in flies and mice, and its over-production is a potent inducer of over-proliferation and cancer. Myc protein is localized to the nucleus where it executes its many functions, however the specific sub-nuclear localization of Myc has rarely been reported. The work we describe here began with an observation of unexpected, punctate spots of Myc protein in certain regions of Drosophila embryos. We investigated the identity of these puncta and demonstrate that Myc is co-localized with coilin, a marker for sub-nuclear organelles known as Cajal Bodies (CBs), in embryos, larvae and ovaries. Using antibodies specific for U7 snRNP component Lsm11, we show that the majority of Myc and coilin co-localization occurs in Histone Locus Bodies (HLBs), the sites of histone mRNA transcription and processing. Furthermore, Myc localizes to HLBs only during replication in mitotic and endocycling cells, suggesting that its role there relates to replication-dependent canonical histone gene transcription. These results provide evidence that sub-nuclear localization of Myc is cell-cycle dependent and potentially important for histone mRNA production and processing.

摘要

Myc 是一种重要的蛋白质,位于动物生长和增殖所需的多个途径的中心。在果蝇和小鼠中,Myc 的缺失是致命的,而过表达 Myc 则是过度增殖和癌症的有力诱导剂。Myc 蛋白定位于细胞核内,在那里执行其多种功能,然而,Myc 的具体亚核定位很少有报道。我们在这里描述的工作始于在果蝇胚胎的某些区域观察到 Myc 蛋白的意外点状斑点的观察。我们研究了这些斑点的身份,并证明 Myc 与 coilin 共定位,coilin 是一种标记核内细胞器的标志物,称为 Cajal 体 (CBs),在胚胎、幼虫和卵巢中。我们使用针对 U7 snRNP 组件 Lsm11 的特异性抗体,表明大多数 Myc 和 coilin 的共定位发生在组蛋白基因转录和加工的位点Histone Locus Bodies (HLBs) 中。此外,Myc 仅在有丝分裂和内循环细胞的复制过程中定位于 HLBs,表明其在那里的作用与复制依赖性的典型组蛋白基因转录有关。这些结果提供了证据,表明亚核定位的 Myc 是细胞周期依赖性的,并且可能对组蛋白 mRNA 的产生和加工很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df19/3160328/d71f97b2a967/pone.0023928.g001.jpg

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