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Actin dynamics in growth cone motility and navigation

机译:肌动蛋白在生长锥运动和导航中的动力学

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Motile growth cones lead growing axons through developing tissues to synaptic targets. These behaviors depend on the organization and dynamics of actin filaments that fill the growth cone leading margin [peripheral (P-) domain]. Actin filament organization in growth cones is regulated by actin-binding proteins that control all aspects of filament assembly, turnover, interactions with other filaments and cytoplasmic components, and participation in producing mechanical forces. Actin filament polymerization drives protrusion of sensory filopodia and lamellipodia, and actin filament connections to the plasma membrane link the filament network to adhesive contacts of filopodia and lamellipodia with other surfaces. These contacts stabilize protrusions and transduce mechanical forces generated by actomyosin activity into traction that pulls an elongating axon along the path toward its target. Adhesive ligands and extrinsic guidance cues bind growth cone receptors and trigger signaling activities involving Rho GTPases, kinases, phosphatases, cyclic nucleotides, and [Ca++] fluxes. These signals regulate actin-binding proteins to locally modulate actin polymerization, interactions, and force transduction to steer the growth cone leading margin toward the sources of attractive cues and away from repellent guidance cues.
机译:运动生长锥通过发育中的组织引导突触靶标生长。这些行为取决于填充生长锥前缘[外围(P-)域]的肌动蛋白丝的组织和动力学。生长锥中的肌动蛋白丝组织受肌动蛋白结合蛋白调控,肌动蛋白结合蛋白控制丝的组装,周转,与其他丝和胞质成分的相互作用以及参与产生机械力的各个方面。肌动蛋白丝的聚合作用驱动感觉性丝状伪足和纤毛膜的突起,肌动蛋白丝与质膜的连接将纤丝网络连接到丝状伪足和纤毛膜与其他表面的粘合剂接触。这些接触可稳定突起,并将肌动球蛋白活性产生的机械力转化为牵引力,从而将伸长的轴突沿其目标拉向路径。粘性配体和外部指导线索结合生长锥受体并触发涉及Rho GTPases,激酶,磷酸酶,环核苷酸和[Ca ++]通量的信号传导活性。这些信号调节肌动蛋白结合蛋白,以局部调节肌动蛋白的聚合反应,相互作用和力转导,从而引导生长锥的前缘向吸引线索的源头转移,并远离驱避引导线索。

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