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Noncovalent structure of SENP1 in complex with SUMO2

机译:Sumo2复合物中SENP1的非共价结构

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SUMOylation is a post-translational modification in which a small ubiquitin-like molecule (SUMO) is appended to substrate proteins and is known to influence myriads of biological processes. A delicate interplay between several families of SUMOylation proteins and their substrates ensures the proper level of SUMOylation required for normal cell function. Among the SUMO proteins, SUMO_2 is known to form mono-SUMOylated proteins and engage in poly-SUMO chain formation, while sentrin-specific protease 1 (SENP1) is a key enzyme in regulating both events. Determination of the SENP1-SUMO2 interaction is therefore necessary to better understand SUMOylation. In this regard, the current paper reports the noncovalent structure of SENP1 in complex with SUMO2, which was refined to a resolution of 2.62 ? with R and R_(free) values of 22.92% and 27.66%, respectively. The structure shows that SENP1-SUMO2 complex formation is driven largely by polar interactions and limited hydrophobic contacts. The essential C-terminal motif (QQTGG) of SUMO2 is stabilized by a number of specific bonding interactions that enable it to protrude into the catalytic triad of SENP1 and provide the arrangement necessary for maturation of SUMO and deSUMOylation activity. Overall, the structure shows a number of structural details that pinpoint the basis of SENP1-SUMO2 complex formation.
机译:SuMoylation是一种翻译后修饰,其中将小的泛素样分子(SUMO)附加到底物蛋白上,并且已知影响生物过程的血清。尤建蛋白质及其基材的几个家庭之间的微妙相互作用确保正常细胞功能所需的适当水平。在SUMO蛋白中,已知SUMO_2形成单雄性蛋白质并与聚SUMO链形成接合,而哨兵特异性蛋白酶1(SENP1)是调节两种事件的关键酶。因此,需要测定SENP1-SUMO2相互作用,以更好地了解Sumoylation。在这方面,目前的纸张向Sumo2报告塞普1的非共价结构,其精制到2.62的分辨率? r和r_(自由)分别为22.92%和27.66%。该结构表明,SENP1-SUMO2复杂形成在很大程度上通过极性相互作用和有限的疏水触点驱动。 SuMO2的必需C末端基序(QQTGG)通过许多特定的键合相互作用稳定,使其能够突出到SENP1的催化性三合会中,并提供共同和DESUMOOLINATION活性所需的布置。总体而言,该结构显示了许多结构细节,可以针对SENP1-SUMO2复杂形成的基础。

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