Arp2/3 活性受 N-WASP、WAVE2 和 PICK1 的拮抗调节,决定了星形胶质细胞形态的动态变化。
The antagonistic modulation of Arp2/3 activity by N-WASP, WAVE2 and PICK1 defines dynamic changes in astrocyte morphology.
机构信息
School of Biochemistry, Medical Sciences Building, University of Bristol, Bristol BS8 1TD, UK.
出版信息
J Cell Sci. 2013 Sep 1;126(Pt 17):3873-83. doi: 10.1242/jcs.125146. Epub 2013 Jul 10.
Astrocytes exhibit a complex, branched morphology, allowing them to functionally interact with numerous blood vessels, neighboring glial processes and neuronal elements, including synapses. They also respond to central nervous system (CNS) injury by a process known as astrogliosis, which involves morphological changes, including cell body hypertrophy and thickening of major processes. Following severe injury, astrocytes exhibit drastically reduced morphological complexity and collectively form a glial scar. The mechanistic details behind these morphological changes are unknown. Here, we investigate the regulation of the actin-nucleating Arp2/3 complex in controlling dynamic changes in astrocyte morphology. In contrast to other cell types, Arp2/3 inhibition drives the rapid expansion of astrocyte cell bodies and major processes. This intervention results in a reduced morphological complexity of astrocytes in both dissociated culture and in brain slices. We show that this expansion requires functional myosin II downstream of ROCK and RhoA. Knockdown of the Arp2/3 subunit Arp3 or the Arp2/3 activator N-WASP by siRNA also results in cell body expansion and reduced morphological complexity, whereas depleting WAVE2 specifically reduces the branching complexity of astrocyte processes. By contrast, knockdown of the Arp2/3 inhibitor PICK1 increases astrocyte branching complexity. Furthermore, astrocyte expansion induced by ischemic conditions is delayed by PICK1 knockdown or N-WASP overexpression. Our findings identify a new morphological outcome for Arp2/3 activation in restricting rather than promoting outwards movement of the plasma membrane in astrocytes. The Arp2/3 regulators PICK1, and N-WASP and WAVE2 function antagonistically to control the complexity of astrocyte branched morphology, and this mechanism underlies the morphological changes seen in astrocytes during their response to pathological insult.
星形胶质细胞表现出复杂的分支形态,使其能够与众多血管、邻近的神经胶质突起和神经元成分(包括突触)进行功能相互作用。它们还通过一种称为星形胶质细胞增生的过程对中枢神经系统 (CNS) 损伤作出反应,其中包括形态变化,包括细胞体肥大和主要突起变厚。在严重损伤后,星形胶质细胞表现出形态复杂性急剧降低,并共同形成神经胶质瘢痕。这些形态变化背后的机制细节尚不清楚。在这里,我们研究了肌动蛋白成核 Arp2/3 复合物在控制星形胶质细胞形态动态变化中的调节作用。与其他细胞类型相比,Arp2/3 抑制驱动星形胶质细胞细胞体和主要突起的快速扩张。这种干预导致在分离培养和脑片中星形胶质细胞的形态复杂性降低。我们表明,这种扩张需要肌球蛋白 II 下游的 ROCK 和 RhoA 的功能。通过 siRNA 敲低 Arp2/3 亚基 Arp3 或 Arp2/3 激活剂 N-WASP 也会导致细胞体扩张和形态复杂性降低,而特异性耗尽 WAVE2 会降低星形胶质细胞突起的分支复杂性。相比之下,敲低 Arp2/3 抑制剂 PICK1 会增加星形胶质细胞的分支复杂性。此外,通过 PICK1 敲低或 N-WASP 过表达延迟缺血条件诱导的星形胶质细胞扩张。我们的研究结果确定了 Arp2/3 激活的一种新的形态结果,即在限制而不是促进星形胶质细胞质膜向外运动方面。Arp2/3 调节剂 PICK1、N-WASP 和 WAVE2 拮抗作用控制星形胶质细胞分支形态的复杂性,该机制是星形胶质细胞对病理损伤作出反应时观察到的形态变化的基础。
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