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对所有钙黏蛋白进行全神经系统分析,揭示了跨多个解剖尺度的神经元特异性功能。

Nervous system-wide analysis of all cadherins reveals neuron-specific functions across multiple anatomical scales.

作者信息

Majeed Maryam, Liao Chien-Po, Hobert Oliver

机构信息

Department of Biological Sciences, Howard Hughes Medical Institute, Columbia University, New York, NY, USA.

出版信息

Sci Adv. 2025 Feb 21;11(8):eads2852. doi: 10.1126/sciadv.ads2852.

Abstract

Differential expression of cell adhesion proteins is a hallmark of cell-type diversity across the animal kingdom. Gene family-wide characterization of their organismal expression and function is, however, lacking. Using genome-engineered reporter alleles, we established an atlas of expression of the entire set of 12 cadherin gene family members in the nematode , revealing differential expression across neuronal classes, a dichotomy between broadly and narrowly expressed cadherins, and several context-dependent temporal transitions in expression across development. Engineered mutant null alleles of cadherins were analyzed for defects in morphology, behavior, neuronal soma positions, neurite neighborhood topology and fasciculation, and localization of synapses in many parts of the nervous system. This analysis revealed a restricted pattern of neuronal differentiation defects at discrete subsets of anatomical scales, including a novel role of cadherins in experience-dependent electrical synapse formation. In total, our analysis results in previously little explored perspectives on cadherin deployment and function.

摘要

细胞粘附蛋白的差异表达是整个动物界细胞类型多样性的一个标志。然而,目前缺乏对其在生物体内表达和功能的全基因家族特征描述。利用基因组工程报告基因等位基因,我们建立了线虫中12个钙粘蛋白基因家族成员全套表达图谱,揭示了不同神经元类别的差异表达、广泛表达和狭窄表达的钙粘蛋白之间的二分法,以及发育过程中几种依赖于环境的表达时间转换。我们分析了工程化的钙粘蛋白突变无效等位基因在形态、行为、神经元胞体位置、神经突邻域拓扑和束状化以及神经系统许多部位突触定位方面的缺陷。该分析揭示了在离散的解剖尺度子集中神经元分化缺陷的受限模式,包括钙粘蛋白在经验依赖性电突触形成中的新作用。总的来说,我们的分析带来了以前很少探索的关于钙粘蛋白部署和功能的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5af4/11844738/6b98d22bcfbb/sciadv.ads2852-f1.jpg

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