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New open conformation of SMYD3 implicates conformational selection and allostery

机译:SMYD3的新开放构象涉及构象选择和变构

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SMYD3 plays a key role in cancer cell viability, adhesion, migration and invasion. SMYD3 promotes formation of inducible regulatory T cells and is involved in reducing autoimmunity. However, the nearly “closed” substrate-binding site and poor in vitro H3K4 methyltransferase activity have obscured further understanding of this oncogenically related protein. Here we reveal that SMYD3 can adopt an “open” conformation using molecular dynamics simulation and small-angle X-ray scattering. This ligand-binding-capable open state is related to the crystal structure-like closed state by a striking clamshell-like inter-lobe dynamics. The two states are characterized by many distinct structural and dynamical differences and the conformational transition pathway is mediated by a reversible twisting motion of the C-terminal domain (CTD). The spontaneous transition from the closed to open states suggests two possible, mutually non-exclusive models for SMYD3 functional regulation and the conformational selection mechanism and allostery may regulate the catalytic or ligand binding competence of SMYD3. This study provides an immediate clue to the puzzling role of SMYD3 in epigenetic gene regulation.
机译:SMYD3在癌细胞活力,粘附,迁移和侵袭中起关键作用。 SMYD3促进诱导型调节性T细胞的形成,并参与降低自身免疫性。但是,几乎“封闭的”底物结合位点和体外H3K4甲基转移酶活性差,已使对该致癌相关蛋白的进一步了解变得模糊。在这里我们揭示了SMYD3可以采用分子动力学模拟和小角度X射线散射的“开放”构象。该具有配体结合能力的开放状态通过惊人的蛤壳状的瓣间动力学与晶体结构的封闭状态有关。这两个状态的特征是许多明显的结构和动力学差异,并且构象转变途径是由C末端结构域(CTD)的可逆扭曲运动介导的。从闭合状态到开放状态的自发转变表明SMYD3功能调节的两种可能的,互不排斥的模型,并且构象选择机制和变构可能调节SMYD3的催化或配体结合能力。这项研究为SMYD3在表观遗传基因调控中令人费解的作用提供了直接线索。

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