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Domain-to-domain coupling in voltage-sensing phosphatase

机译:电压感应磷酸酶中的域间耦合

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Voltage-sensing phosphatase (VSP) consists of a transmembrane voltage sensor and a cytoplasmic enzyme region. The enzyme region contains the phosphatase and C2 domains, is structurally similar to the tumor suppressor phosphatase PTEN, and catalyzes the dephosphorylation of phosphoinositides. The transmembrane voltage sensor is connected to the phosphatase through a short linker region, and phosphatase activity is induced upon membrane depolarization. Although the detailed molecular characteristics of the voltage sensor domain and the enzyme region have been revealed, little is known how these two regions are coupled. In addition, it is important to know whether mechanism for coupling between the voltage sensor domain and downstream effector function is shared among other voltage sensor domain-containing proteins. Recent studies in which specific amino acid sites were genetically labeled using a fluorescent unnatural amino acid have enabled detection of the local structural changes in the cytoplasmic region of Ciona intestinalis VSP that occur with a change in membrane potential. The results of those studies provide novel insight into how the enzyme activity of the cytoplasmic region of VSP is regulated by the voltage sensor domain.
机译:电压感应磷酸酶(VSP)由跨膜电压传感器和细胞质酶区域组成。所述酶区域包含磷酸酶和C2结构域,在结构上与肿瘤抑制磷酸酶PTEN相似,并且催化磷酸肌醇的去磷酸化。跨膜电压传感器通过短接头区域连接至磷酸酶,并且在膜去极化时诱导磷酸酶活性。尽管已经揭示了电压传感器结构域和酶区域的详细分子特征,但对这两个区域如何耦合的了解却很少。此外,重要的是要知道其他含电压传感器域的蛋白质之间是否共享了电压传感器域与下游效应子功能之间偶联的机制。最近的研究中,使用荧光非天然氨基酸对特定的氨基酸位点进行了遗传标记,从而能够检测到Ciona intestinalis VSP细胞质区域的局部结构变化,这种变化是随着膜电位的变化而发生的。这些研究的结果为VSP胞质区的酶活性如何由电压传感器域调节提供了新的见解。

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