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一个拟南芥剪接 RNP 变体 STEP1 通过限制核酸酶和端粒酶的进入来调节端粒长度的动态平衡。

An Arabidopsis splicing RNP variant STEP1 regulates telomere length homeostasis by restricting access of nuclease and telomerase.

机构信息

Department of Biology, WCU Program, Yonsei University, Seoul, 120-740, Korea.

出版信息

Mol Cells. 2010 Sep;30(3):279-83. doi: 10.1007/s10059-010-0115-y. Epub 2010 Aug 23.

Abstract

Telomere is an essential DNA-protein complex composed of repetitive DNA and binding proteins to protect the chromosomal ends in eukaryotes. Telomere length is regulated by a specialized RNA-dependent DNA polymerase, telomerase and associated proteins. We show here a potential role of STEP1 that was previously isolated by affinity chromatography in controlling telomere length. While STEP1 requires both RNA-binding domains for telomere binding and subsequent DNA protection, it requires only one RBD to interact with telomerase. The differential telomerase inhibitory activity depending on STEP1 concentrations may suggest that STEP1 contributes to controlling telomere length homeostasis, likely by limiting the accessibility of nuclease or telomerase to telomeric DNA.

摘要

端粒是真核生物中由重复 DNA 和结合蛋白组成的重要 DNA-蛋白质复合物,用于保护染色体末端。端粒长度由一种特殊的 RNA 依赖的 DNA 聚合酶、端粒酶和相关蛋白来调控。我们在这里展示了 STEP1 的一个潜在作用,它之前通过亲和层析被分离出来,在控制端粒长度方面发挥作用。虽然 STEP1 既需要 RNA 结合结构域来结合端粒,又需要 DNA 保护,但它只需要一个 RBD 就可以与端粒酶相互作用。端粒酶抑制活性取决于 STEP1 浓度,这可能表明 STEP1 通过限制核酸酶或端粒酶与端粒 DNA 的可及性,有助于控制端粒长度的动态平衡。

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