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Regulation of centrin self-assembly investigated by fluorescence resonance light scattering

机译:通过荧光共振光散射研究中心蛋白自组装的调控

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摘要

Centrin self-assembly is primarily involved in fiber contraction, which is associated with the cell division cycle and ciliogenesis. During centriole separation, centrin reversible phosphorylation plays a key role. There is a question as to how centrin phosphorylation cooperatively co-exists with self-assembly during cell mitosis. Our results suggested that centrin from Euplotes octocarinatus (EoCen) in the self-assembly state can also be phosphorylated by protein kinase A (PKA). Dimers, trimers or tetramers of EoCen have nearly equal abilities of PKA phosphorylating Ser166. In turn, the phosphorylation reaction can change metal ion-induced self-assembly of EoCen. The self-assembly amount and velocity of phosphorylated EoCen were evidently reduced. The self-assembly mode can be reversed by the regulating factor KCl, but not by NaCl or LiCl. At high concentrations of KCl, the degree of EoCen self-assembly was higher than that of phosphorylated EoCen (EoCenp). There were no differences at low concentrations of KCl. Site III on EoCen may be responsible for controlling the balance between phosphorylation and self-assembly. Such results can provide valuable insights for understanding the molecular basis for centrin functions in resting or active cell mitosis.
机译:Centrin自组装主要参与纤维收缩,这与细胞分裂周期和纤毛发生有关。在中心粒分离过程中,中心蛋白可逆磷酸化起关键作用。在细胞有丝分裂过程中,中心蛋白磷酸化与自组装如何共存存在一个问题。我们的研究结果表明,自组装状态的 Euplotes octocarinatus (EoCen)中的蛋白也可以被蛋白激酶A(PKA)磷酸化。 EoCen的二聚体,三聚体或四聚体具有将PKA磷酸化Ser166的能力几乎相同。反过来,磷酸化反应可以改变金属离子诱导的EoCen自组装。磷酸化EoCen的自组装量和速度明显降低。自组装模式可以通过调节因子KCl反转,但不能通过NaCl或LiCl反转。在高浓度的KCl中,EoCen的自组装程度高于磷酸化的EoCen(EoCenp)。在低浓度的KCl中没有差异。 EoCen上的III号位点可能负责控制磷酸化和自组装之间的平衡。这样的结果可以提供有价值的见解,以了解在静止或活动性细胞有丝分裂中中心蛋白功能的分子基础。

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