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通过对结合伴侣的蛋白质组筛选研究 CTD 磷酸酶 SCP1 的底物特异性。

A study of substrate specificity for a CTD phosphatase, SCP1, by proteomic screening of binding partners.

机构信息

Dept. of Applied Biochemistry, Konkuk University, 268 Chungwon Dae-ro, Chungju-City, Chungbuk 380-701, Republic of Korea.

Dept. of Biotechnology, Konkuk University, 268 Chungwon Dae-ro, Chungju-City, Chungbuk 380-701, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2014 May 30;448(2):189-94. doi: 10.1016/j.bbrc.2014.04.089. Epub 2014 Apr 24.

Abstract

RNA polymerase II carboxyl-terminal domain (RNAPII CTD) phosphatases are a newly emerging family of phosphatases. Recently a CTD-specific phosphatase, small CTD phosphatase 1 (SCP1), has shown to act as an evolutionarily conserved transcriptional corepressor for inhibiting neuronal gene transcription in non-neuronal cells. In this study, using the established NIH/3T3 and HEK293T cells, which are expressing human SCP1 proteins under the tight control of expression by doxycycline, a proteomic screening was conducted to identify the binding partners for SCP1. Although the present findings provide the possibility for new avenues to provide to a better understanding of cellular physiology of SCP1, now these proteomic and some immunological approaches for SCP1 interactome might not represent the accurate physiological relevance in vivo. In this presentation, we focus the substrate specificity to delineate an appearance of the dephosphorylation reaction catalyzed by SCP1 phosphatase. We compared the phosphorylated sequences of the immunologically confirmed binding partners with SCP1 searched in HPRD. We found the similar sequences from CdcA3 and validated the efficiency of enzymatic catalysis for synthetic phosphopeptides the recombinant SCP1. This approach led to the identification of several interacting partners with SCP1. We suggest that CdcA3 could be an enzymatic substrate for SCP1 and that SCP1 might have the relationship with cell cycle regulation through enzymatic activity against CdcA3.

摘要

RNA 聚合酶 II 羧基末端结构域 (RNAPII CTD) 磷酸酶是一类新兴的磷酸酶家族。最近,一种 CTD 特异性磷酸酶,小 CTD 磷酸酶 1 (SCP1),被证明作为一种进化上保守的转录共抑制因子,在非神经元细胞中抑制神经元基因转录。在这项研究中,使用已建立的 NIH/3T3 和 HEK293T 细胞,这些细胞在强力霉素的严格控制下表达人 SCP1 蛋白,进行了蛋白质组筛选,以鉴定 SCP1 的结合伙伴。尽管目前的发现为更好地理解 SCP1 的细胞生理学提供了可能性,但现在这些 SCP1 相互作用组的蛋白质组学和一些免疫方法可能不能代表体内的准确生理相关性。在本报告中,我们专注于底物特异性,以描绘 SCP1 磷酸酶催化的去磷酸化反应的出现。我们将免疫确认的结合伙伴的磷酸化序列与 HPRD 中搜索到的 SCP1 进行了比较。我们从 CdcA3 中发现了相似的序列,并验证了重组 SCP1 对合成磷酸肽的酶催化效率。这种方法导致了与 SCP1 相互作用的几个伙伴的鉴定。我们认为 CdcA3 可能是 SCP1 的酶底物,并且 SCP1 可能通过对 CdcA3 的酶活性与细胞周期调控有关。

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