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Molten globule nature of Plasmodium falciparum P2 homo-tetramer

机译:P2均四聚体恶性疟原虫的熔融小球性质

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The P2 protein in Plasmodium falciparum has a high tendency to oligomerize, which seems to drive many of its non-ribosomal functions. During nuclear division of the parasite inside RBC, P2 translocates to the RBC surface as a tetramer. From a systematic study using variety of biophysical techniques, NMR spectral characteristics and relaxation dispersion measurements under different conditions of pH and/or urea concentrations, we deduce that (i) PfP2, an almost entirely helical protein, forms a molten globule monomer at low pH, (ii) at physiological pH, and at micro-molar concentrations, PfP2 is a stable tetramer wherein two dimmers associate sideways with close packing of helices at the interface, and (iii) the molten globule characteristic of the monomer is preserved in the tetramer. This dynamism in the structure of PfP2 may have functional implications since it is known that different kinds of oligomers are transiently formed in the parasite. Highlights ? Plasmodium falciparum P2 (PfP2) is a molten globule. ? PfP2 is a monomer at pH 2 and a tetramer at physiological pH. ? The step-wise assembly of the tetramer has been elucidated. ? A model structure for the PfP2-tetramer has been derived.
机译:恶性疟原虫中的P2蛋白具有高度寡聚的趋势,这似乎驱动了其许多非核糖体功能。在RBC内的寄生虫进行核分裂时,P2以四聚体形式转移到RBC表面。通过使用各种生物物理技术进行的系统研究,在不同pH和/或尿素浓度条件下的NMR光谱特征和弛豫分散测量结果,我们推断出(i)PfP2(一种几乎完全螺旋的蛋白质)在低pH下形成熔融的球状单体(ii)在生理pH值和微摩尔浓度下,PfP2是稳定的四聚体,其中两个二聚体在侧面与螺旋的紧密堆积紧密结合,并且(iii)单体的熔融小球特性保留在四聚体中。 PfP2结构的这种动态性可能具有功能意义,因为已知在寄生虫中会短暂形成不同种类的低聚物。强调 ?恶性疟原虫P2(PfP2)是熔化的小球。 ? PfP2在pH为2时为单体,在生理pH值为四聚体。 ?已经阐明了四聚体的逐步组装。 ?已经得出了PfP2-四聚体的模型结构。

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