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A structural mechanism for dimeric to tetrameric oligomer conversion in Halomonas sp. nucleoside diphosphate kinase

机译:Halomonas sp。中二聚体向四聚体低聚物转化的结构机理。核苷二磷酸激酶

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摘要

Nucleoside diphosphate kinase (NDK) is known to form homotetramers or homohexamers. To clarify the oligomer state of NDK from moderately halophilic Halomonas sp. 593 (HaNDK), the oligomeric state of HaNDK was characterized by light scattering followed by X-ray crystallography. The molecular weight of HaNDK is 33,660, and the X-ray crystal structure determination to 2.3 and 2.7 Å resolution showed a dimer form which was confirmed in the different space groups of R3 and C2 with an independent packing arrangement. This is the first structural evidence that HaNDK forms a dimeric assembly. Moreover, the inferred molecular mass of a mutant HaNDK (E134A) indicated 62.1–65.3 kDa, and the oligomerization state was investigated by X-ray crystallography to 2.3 and 2.5 Å resolution with space groups of P21 and C2. The assembly form of the E134A mutant HaNDK was identified as a Type I tetramer as found in Myxococcus NDK. The structural comparison between the wild-type and E134A mutant HaNDKs suggests that the change from dimer to tetramer is due to the removal of negative charge repulsion caused by the E134 in the wild-type HaNDK. The higher ordered association of proteins usually contributes to an increase in thermal stability and substrate affinity. The change in the assembly form by a minimum mutation may be an effective way for NDK to acquire molecular characteristics suited to various circumstances.
机译:已知核苷二磷酸激酶(NDK)形成同四聚体或同六聚体。澄清从中等嗜盐Halomonas sp。的NDK的低聚物状态。 593(HaNDK),HaNDK的低聚状态通过光散射和X射线晶体学表征。 HaNDK的分子量为33,660,通过X射线晶体结构测定(分辨率为2.3和2.7)显示为二聚体形式,这在R3和C2的不同空间群中得到了独立的堆积排列。这是HaNDK形成二聚体组装的第一个结构证据。此外,推定的突变型HaNDK(E134A)的分子量为62.1–65.3 kDa,并通过X射线晶体学研究了低聚状态,分辨率为2.3和2.5Å,空间基团为P21和C2。如在粘球菌NDK中发现的,E134A突变体HaNDK的组装形式被鉴定为I型四聚体。野生型和E134A突变型HaNDK之间的结构比较表明,从二聚体到四聚体的变化是由于消除了野生型HaNDK中E134引起的负电荷排斥。蛋白质的较高序的缔合通常有助于提高热稳定性和底物亲和力。通过最小程度的突变改变装配形式可能是NDK获得适合各种情况的分子特性的有效方法。

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