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Small GTP-binding Protein TC10 Differentially Regulates Two Distinct Populations of Filamentous Actin in 3T3L1 Adipocytes

机译:小GTP结合蛋白TC10差异调节3T3L1脂肪细胞中两个丝状肌动蛋白的不同群体。

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摘要

TC10 is a member of the Rho family of small GTP-binding proteins that has previously been implicated in the regulation of insulin-stimulated GLUT4 translocation in adipocytes. In a manner similar to Cdc42-stimulated actin-based motility, we have observed that constitutively active TC10 (TC10/Q75L) can induce actin comet tails in Xenopus oocyte extracts in vitro and extensive actin polymerization in the perinuclear region when expressed in 3T3L1 adipocytes. In contrast, expression of TC10/Q75L completely disrupted adipocyte cortical actin, which was specific for TC10, because expression of constitutively active Cdc42 was without effect. The effect of TC10/Q75L to disrupt cortical actin was abrogated after deletion of the amino terminal extension (ΔN-TC10/Q75L), whereas this deletion retained the ability to induce perinuclear actin polymerization. In addition, alteration of perinuclear actin by expression of TC10/Q75L, a dominant-interfering TC10/T31N mutant or a mutant N-WASP protein (N-WASP/ΔVCA) reduced the rate of VSV G protein trafficking to the plasma membrane. Furthermore, TC10 directly bound to Golgi COPI coat proteins through a dilysine motif in the carboxyl terminal domain consistent with a role for TC10 regulating actin polymerization on membrane transport vesicles. Together, these data demonstrate that TC10 can differentially regulate two types of filamentous actin in adipocytes dependent on distinct functional domains and its subcellular compartmentalization.
机译:TC10是小GTP结合蛋白Rho家族的成员,该家族以前已参与了脂肪细胞中胰岛素刺激的GLUT4易位的调节。以类似于Cdc42刺激的基于肌动蛋白的运动性的方式,我们已经观察到,组成型活性TC10(TC10 / Q75L)可以在非洲爪蟾卵母细胞提取物中诱导肌动蛋白彗星尾巴,并在3T3L1脂肪细胞中表达时在核周区域广泛发生肌动蛋白聚合。相反,TC10 / Q75L的表达完全破坏了对TC10特有的脂肪细胞皮质肌动蛋白,因为组成型活性Cdc42的表达没有作用。删除氨基末端延伸(ΔN-TC10/ Q75L)后,取消了TC10 / Q75L破坏皮质肌动蛋白的作用,而这种删除保留了诱导核周肌动蛋白聚合的能力。此外,通过表达TC10 / Q75L,显性干扰TC10 / T31N突变体或突变N-WASP蛋白(N-WASP /ΔVCA)的表达来改变核周肌动蛋白降低了VSV G蛋白转运至质膜的速率。此外,TC10通过羧基末端结构域中的二赖氨酸基序直接结合于高尔基COPI外壳蛋白,这与TC10调节膜运输小泡上肌动蛋白聚合的作用一致。总之,这些数据表明,TC10可以根据不同的功能域及其亚细胞区室化,差异调节脂肪细胞中的两种丝状肌动蛋白。

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