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BLM核仁定位的调控

Regulation of BLM Nucleolar Localization.

作者信息

Tangeman Larissa, McIlhatton Michael A, Grierson Patrick, Groden Joanna, Acharya Samir

机构信息

Department of Cancer Biology and Genetics, College of Medicine, The Ohio State University, Columbus, OH 43210, USA.

Divisions of Hematology and Medical Oncology, Department of Internal Medicine, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Genes (Basel). 2016 Sep 21;7(9):69. doi: 10.3390/genes7090069.

Abstract

Defects in coordinated ribosomal RNA (rRNA) transcription in the nucleolus cause cellular and organismal growth deficiencies. Bloom's syndrome, an autosomal recessive human disorder caused by mutated recQ-like helicase BLM, presents with growth defects suggestive of underlying defects in rRNA transcription. Our previous studies showed that BLM facilitates rRNA transcription and interacts with RNA polymerase I and topoisomerase I (TOP1) in the nucleolus. The mechanisms regulating localization of BLM to the nucleolus are unknown. In this study, we identify the TOP1-interaction region of BLM by co-immunoprecipitation of in vitro transcribed and translated BLM segments and show that this region includes the highly conserved nuclear localization sequence (NLS) of BLM. Biochemical and nucleolar co-localization studies using site-specific mutants show that two serines within the NLS (S1342 and S1345) are critical for nucleolar localization of BLM but do not affect the functional interaction of BLM with TOP1. Mutagenesis of both serines to aspartic acid (phospho-mimetic), but not alanine (phospho-dead), results in approximately 80% reduction in nucleolar localization of BLM while retaining the biochemical functions and nuclear localization of BLM. Our studies suggest a role for this region in regulating nucleolar localization of BLM via modification of the two serines within the NLS.

摘要

核仁中核糖体RNA(rRNA)转录协调缺陷会导致细胞和机体生长不足。布卢姆综合征是一种由突变的类recQ解旋酶BLM引起的常染色体隐性人类疾病,其表现出的生长缺陷提示rRNA转录存在潜在缺陷。我们之前的研究表明,BLM促进rRNA转录,并在核仁中与RNA聚合酶I和拓扑异构酶I(TOP1)相互作用。调节BLM定位于核仁的机制尚不清楚。在本研究中,我们通过体外转录和翻译的BLM片段的共免疫沉淀鉴定了BLM与TOP1的相互作用区域,并表明该区域包括BLM高度保守的核定位序列(NLS)。使用位点特异性突变体的生化和核仁共定位研究表明,NLS内的两个丝氨酸(S1342和S1345)对BLM的核仁定位至关重要,但不影响BLM与TOP1的功能相互作用。将两个丝氨酸突变为天冬氨酸(模拟磷酸化)而非丙氨酸(磷酸化缺失),会导致BLM的核仁定位减少约80%,同时保留BLM的生化功能和核定位。我们的研究表明该区域通过修饰NLS内的两个丝氨酸在调节BLM的核仁定位中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2b1/5042399/4e73def18600/genes-07-00069-g001.jpg

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