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Myristoylated, Alanine-rich C-Kinase Substrate Phosphorylation Regulates Growth Cone Adhesion and Pathfinding

机译:肉豆蔻酰化的富含丙氨酸的C激酶底物磷酸化调节生长锥的粘附和寻路

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摘要

Repellents evoke growth cone turning by eliciting asymmetric, localized loss of actin cytoskeleton together with changes in substratum attachment. We have demonstrated that semaphorin-3A (Sema3A)-induced growth cone detachment and collapse require eicosanoid-mediated activation of protein kinase Cε (PKCε) and that the major PKCε target is the myristoylated, alanine-rich C-kinase substrate (MARCKS). Here, we show that PKC activation is necessary for growth cone turning and that MARCKS, while at the membrane, colocalizes with α3-integrin in a peripheral adhesive zone of the growth cone. Phosphorylation of MARCKS causes its translocation from the membrane to the cytosol. Silencing MARCKS expression dramatically reduces growth cone spread, whereas overexpression of wild-type MARCKS inhibits growth cone collapse triggered by PKC activation. Expression of phosphorylation-deficient, mutant MARCKS greatly expands growth cone adhesion, and this is characterized by extensive colocalization of MARCKS and α3-integrin, resistance to eicosanoid-triggered detachment and collapse, and reversal of Sema3A-induced repulsion into attraction. We conclude that MARCKS is involved in regulating growth cone adhesion as follows: its nonphosphorylated form stabilizes integrin-mediated adhesions, and its phosphorylation-triggered release from adhesions causes localized growth cone detachment critical for turning and collapse.
机译:驱虫剂引起肌动蛋白细胞骨架的不对称,局部丢失以及基质附着的变化,从而引起生长锥的旋转。我们已经证明,信号量3A(Sema3A)诱导的生长锥分离和塌陷需要类花生酸介导的蛋白激酶Cε(PKCε)激活,并且主要的PKCε目标是肉豆蔻酰化的,富含丙氨酸的C激酶底物(MARCKS)。在这里,我们证明了PKC激活对于生长锥的转动是必需的,而MARCKS在膜上时与α3-整联蛋白共定位在生长锥的周边粘合区内。 MARCKS的磷酸化导致其从膜到细胞质的易位。沉默MARCKS表达可显着减少生长锥扩散,而野生型MARCKS的过表达抑制由PKC激活触发的生长锥塌陷。磷酸化缺陷的突变型MARCKS的表达极大地扩展了生长锥的粘附力,其特征是MARCKS和α3-整联蛋白广泛共定位,对类花生酸触发的分离和塌陷具有抗性,以及Sema3A诱导的排斥反应被逆转为吸引。我们得出结论,MARCKS参与调节生长锥的粘附,如下所示:其非磷酸化形式稳定整合素介导的粘附,其磷酸化触发的粘附释放导致局部生长锥脱离,这对于转向和塌陷至关重要。

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