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神经元生长锥中膜回收的发育调控途径的鉴定。

Identification of a developmentally regulated pathway of membrane retrieval in neuronal growth cones.

作者信息

Bonanomi Dario, Fornasiero Eugenio F, Valdez Gregorio, Halegoua Simon, Benfenati Fabio, Menegon Andrea, Valtorta Flavia

机构信息

S. Raffaele Scientific Institute/Vita-Salute University and IIT Unit of Molecular Neuroscience, 20132 Milano, Italy.

出版信息

J Cell Sci. 2008 Nov 15;121(Pt 22):3757-69. doi: 10.1242/jcs.033803. Epub 2008 Oct 21.

Abstract

The growth-cone plasma membrane constantly reconfigures during axon navigation and upon target recognition. The identity and regulation of the membrane pathway(s) participating in remodeling of the growth-cone surface remain elusive. Here, we identify a constitutive, high-capacity plasma-membrane-recycling activity in the axonal growth cones, which is mediated by a novel bulk endocytic pathway that is mechanistically related to macropinocytosis. This pathway generates large compartments at sites of intense actin-based membrane ruffling through the actions of phosphatidylinositol 3-kinase, the small GTPase Rac1 and the pinocytic chaperone Pincher. At early developmental stages, bulk endocytosis is the primary endocytic pathway for rapid retrieval of the growth-cone plasma membrane. At later stages, during the onset of synaptogenesis, an intrinsic program of maturation leads to downregulation of basal bulk endocytosis and the emergence of depolarization-induced synaptic-vesicle exo-endocytosis. We propose that the control of bulk membrane retrieval contributes to the homeostatic regulation of the axonal plasma membrane and to growth-cone remodeling during axonal outgrowth. In addition, we suggest that the downregulation of bulk endocytosis during synaptogenesis might contribute to the preservation of synaptic-vesicle specificity.

摘要

在轴突导航和目标识别过程中,生长锥质膜不断重新配置。参与生长锥表面重塑的膜途径的身份和调控仍不清楚。在这里,我们在轴突生长锥中鉴定出一种组成性的、高容量的质膜回收活性,它由一种新的批量内吞途径介导,该途径在机制上与巨胞饮作用相关。通过磷脂酰肌醇3激酶、小GTP酶Rac1和胞饮伴侣Pincher的作用,该途径在基于肌动蛋白的强烈膜褶皱部位产生大的区室。在发育早期,批量内吞是快速回收生长锥质膜的主要内吞途径。在后期,在突触发生开始时,一个内在的成熟程序导致基础批量内吞的下调和去极化诱导的突触小泡外-内吞的出现。我们提出,批量膜回收的控制有助于轴突质膜的稳态调节以及轴突生长过程中的生长锥重塑。此外,我们认为突触发生过程中批量内吞的下调可能有助于保持突触小泡的特异性。

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