Department of Pediatrics and Colorado Intellectual and Developmental Disabilities Research Center, University of Colorado School of Medicine, Aurora, Colorado, United States of America.
PLoS One. 2012;7(2):e31858. doi: 10.1371/journal.pone.0031858. Epub 2012 Feb 27.
The growth cone, the tip of the emerging neurite, plays a crucial role in establishing the wiring of the developing nervous system. We performed an extensive proteomic analysis of axonal growth cones isolated from the brains of fetal Sprague-Dawley rats. Approximately 2000 proteins were identified at ≥ 99% confidence level. Using informatics, including functional annotation cluster and KEGG pathway analysis, we found great diversity of proteins involved in axonal pathfinding, cytoskeletal remodeling, vesicular traffic and carbohydrate metabolism, as expected. We also found a large and complex array of proteins involved in translation, protein folding, posttranslational processing, and proteasome/ubiquitination-dependent degradation. Immunofluorescence studies performed on hippocampal neurons in culture confirmed the presence in the axonal growth cone of proteins representative of these processes. These analyses also provide evidence for rough endoplasmic reticulum and reveal a reticular structure equipped with Golgi-like functions in the axonal growth cone. Furthermore, Western blot revealed the growth cone enrichment, relative to fetal brain homogenate, of some of the proteins involved in protein synthesis, folding and catabolism. Our study provides a resource for further research and amplifies the relatively recently developed concept that the axonal growth cone is equipped with proteins capable of performing a highly diverse range of functions.
生长锥是新生成突起的尖端,在构建发育中神经系统的连接中起着至关重要的作用。我们对来自胎鼠大脑的轴突生长锥进行了广泛的蛋白质组学分析。在≥99%置信水平下鉴定出了大约 2000 种蛋白质。通过信息学分析,包括功能注释聚类和 KEGG 途径分析,我们发现参与轴突寻路、细胞骨架重塑、囊泡运输和碳水化合物代谢的蛋白质具有很大的多样性,这是意料之中的。我们还发现了大量参与翻译、蛋白质折叠、翻译后加工以及蛋白酶体/泛素依赖性降解的复杂蛋白质。在培养的海马神经元上进行的免疫荧光研究证实了这些过程的代表性蛋白质存在于轴突生长锥中。这些分析还为粗面内质网提供了证据,并揭示了轴突生长锥中存在一种带有高尔基样功能的网状结构。此外,Western blot 显示,与胎脑匀浆相比,一些参与蛋白质合成、折叠和分解代谢的蛋白质在生长锥中富集。我们的研究为进一步的研究提供了资源,并扩展了最近发展起来的概念,即轴突生长锥配备了能够执行高度多样化功能的蛋白质。