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Clustering transmembrane-agrin induces filopodia-like processes on axons and dendrites.

机译:聚集的跨膜凝集素诱导轴突和树突上的丝状伪足样过程。

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The transmembrane form of agrin (TM-agrin) is primarily expressed in the CNS, particularly on neurites. To analyze its function, we clustered TM-agrin on neurons using anti-agrin antibodies. On axons from the chick CNS and PNS as well as on axons and dendrites from mouse hippocampal neurons anti-agrin antibodies induced the dose- and time-dependent formation of numerous filopodia-like processes. The processes appeared within minutes after antibody addition and contained a complex cytoskeleton. Formation of processes required calcium, could be inhibited by cytochalasine D, but was not influenced by staurosporine, heparin or pervanadate. Time-lapse video microscopy revealed that the processes were dynamic and extended laterally along the entire length of the neuron. The lateral processes had growth cones at their tips that initially adhered to the substrate, but subsequently collapsed and were retracted. These data provide the first evidence for a specific role of TM-agrin in shaping the cytoskeleton of neurites in the developing nervous system.
机译:凝集素的跨膜形式(TM-agrin)主要在中枢神经系统中表达,尤其是在神经突上。为了分析其功能,我们使用抗凝集素抗体将TM-agrin聚集在神经元上。在来自小鸡CNS和PNS的轴突上以及在小鼠海马神经元的轴突和树突上,抗凝集素抗体诱导了许多丝状伪足样过程的剂量依赖性和时间依赖性形成。该过程在添加抗体后数分钟内出现,并包含复杂的细胞骨架。所需的钙形成过程可以被细胞松弛素D抑制,但不受星形孢菌素,肝素或过氧钒酸盐的影响。延时视频显微镜显示该过程是动态的,并沿神经元的整个长度横向延伸。横向过程在其尖端处具有生长锥,该生长锥最初粘附至基底,但随后塌陷并缩回。这些数据为TM-凝集素在塑造神经系统发育中的神经突的细胞骨架中的特定作用提供了第一个证据。

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