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Neural differentiation NCAM-mediated adhesion and gap junctional communication in neuroectoderm. A study in vitro

机译:神经外胚层中的神经分化NCAM介导的粘附和间隙连接通讯。体外研究

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摘要

We studied the development of NCAM and gap junctional communication, and their mutual relationship in chick neuroectoderm in vitro. Expression of NCAM, as detected by monoclonal and polyclonal antibodies, and development of junctional communication, as detected by extensive cell-to-cell transfer of 400-500-D fluorescent tracers, occurred in cultures from stage-2 embryos onward. Both expressions presumably required primary induction. The differentiating cells formed discrete fields of expression on the second to third day in culture, with the NCAM fields coinciding with the junctional communication fields delineated by the tracers. Other neural differentiations developed in the following order: tetanus toxin receptors, neurofilament protein, and neurite outgrowth. Chronic treatment with antibody Fab fragments against NCAM interfered with the development of communication, suggesting that NCAM-mediated adhesion promotes formation of cell-to-cell channels. Temperature-sensitive mutant Rous sarcoma virus blocked (reversibly) communication and the subsequent development of neurofilament protein and neurites, but expression of NCAM continued.
机译:我们研究了NCAM和间隙连接通讯的发展,以及它们在鸡神经外胚层中的相互关系。从第2阶段开始的培养物中,通过单克隆抗体和多克隆抗体检测到NCAM的表达,并通过400-500-D荧光示踪剂的大量细胞间转移检测到连接通讯的发展。两种表达方式大概都需要初级诱导。分化细胞在培养的第二天到第三天形成离散的表达区域,NCAM区域与示踪剂描绘的交界通讯区域相吻合。其他神经分化发育的顺序如下:破伤风毒素受体,神经丝蛋白和神经突生长。用抗NCAM的抗体Fab片段进行的长期治疗会干扰通讯的发展,这表明NCAM介导的粘附促进了细胞间通道的形成。温度敏感性突变型劳斯肉瘤病毒阻断(可逆)交流,并随后阻止神经丝蛋白和神经突的发育,但NCAM的表达仍在继续。

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