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成年再生光感受器的突触蛋白表达

Synaptic protein expression by regenerating adult photoreceptors.

作者信息

Yang Haidong, Standifer Kelly M, Sherry David M

机构信息

College of Optometry, University of Houston, Houston, Texas 77204-2020, USA.

出版信息

J Comp Neurol. 2002 Feb 11;443(3):275-88. doi: 10.1002/cne.10116.

Abstract

Regeneration of functionally normal synapses is required for functional recovery after degenerative central nervous system insults and requires proper expression and targeting of presynaptic proteins by regenerating neurons. The reconstitution of presynaptic terminals by regenerating adult neurons is poorly understood, however. We examined the intrinsic ability of regenerating adult retinal photoreceptors to reconstitute properly differentiated presynaptic terminals in the absence of target contact. The expression and localization of vesicle-associated membrane protein (VAMP), synaptic vesicle protein 2 (SV2), synaptophysin, synapsin I, and synaptosomal-associated protein of 25 kDa (SNAP-25) was assessed immunocytochemically. Photoreceptor terminals in the intact retina contain VAMP, SV2, synaptophysin, and SNAP-25, but not synapsin I. Isolated, regenerating adult photoreceptors intrinsically expressed the proper complement of synaptic vesicle proteins in the absence of target contact: VAMP, SV2, and synaptophysin were present at all stages of regenerative growth; synapsin I was never expressed. At early stages of regenerative growth, VAMP, SV2, and synaptophysin were diffusely localized in the cell, with prominent VAMP labeling distributed along the plasma membrane. SV2 and synaptophysin rapidly localized to regenerated terminals, but VAMP accumulated much more slowly, indicating that these proteins are trafficked independently. In contrast, labeling for SNAP-25, which is associated with the presynaptic plasma membrane, was undetectable in regenerating photoreceptors, suggesting that SNAP-25 expression is target-regulated. Thus, regenerating photoreceptors can intrinsically regulate the expression of the proper set of synaptic vesicle proteins. Proper expression of other presynaptic proteins, such as SNAP-25, and proper subcellular localization of synaptic proteins such as VAMP, however, may require extrinsic cues such as target contact.

摘要

中枢神经系统发生退行性损伤后,功能的恢复需要功能正常的突触再生,这需要再生神经元正确表达和定位突触前蛋白。然而,目前对成年神经元再生过程中突触前终末的重构了解甚少。我们研究了成年视网膜光感受器在没有靶细胞接触的情况下,重构分化正常的突触前终末的内在能力。通过免疫细胞化学方法评估了囊泡相关膜蛋白(VAMP)、突触囊泡蛋白2(SV2)、突触素、突触结合蛋白I和25 kDa突触体相关蛋白(SNAP - 25)的表达和定位。完整视网膜中的光感受器终末含有VAMP、SV2、突触素和SNAP - 25,但不含有突触结合蛋白I。分离的成年再生光感受器在没有靶细胞接触的情况下,内在地表达了适当的突触囊泡蛋白组合:在再生生长的各个阶段都存在VAMP、SV2和突触素;从未表达突触结合蛋白I。在再生生长的早期阶段,VAMP、SV2和突触素在细胞内呈弥散分布,VAMP在质膜上有明显的标记。SV2和突触素迅速定位于再生终末,但VAMP的积累要慢得多,这表明这些蛋白的运输是独立的。相比之下,在再生的光感受器中未检测到与突触前质膜相关的SNAP - 25标记,这表明SNAP - 25的表达受靶细胞调控。因此,再生的光感受器可以内在地调节适当的突触囊泡蛋白组合的表达。然而,其他突触前蛋白(如SNAP - 25)的正确表达以及突触蛋白(如VAMP)在亚细胞水平的正确定位,可能需要诸如靶细胞接触等外在信号。

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