首页> 美国卫生研究院文献>The Journal of Neuroscience >Three Functionally Distinct Adhesions in Filopodia: Shaft Adhesions Control Lamellar Extension
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Three Functionally Distinct Adhesions in Filopodia: Shaft Adhesions Control Lamellar Extension

机译:丝足中的三种功能不同的粘附:轴粘附控制层状延伸

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摘要

In this study, adhesions on individual filopodial shafts were shown to control veil (lamellar) advance and to be modulated by guidance cues. Adhesions were detected in individual filopodia of sensory growth cones using optical recordings, adhesion markers, and electron microscopy. Veils readily advanced along filopodia lacking shaft adhesions but rarely advanced along filopodia displaying shaft adhesions. Experiments altering adhesion showed that this relationship is not caused by veils removing adhesions as they advanced. Reducing adhesion with antibodies decreased the proportion of filopodia with shaft adhesions and coordinately increased veil advance. Moreover, the inhibitory relationship was maintained: veils still failed to advance on individual filopodia that retained shaft adhesions. These results support the idea that shaft adhesions inhibit veil advance. Of particular interest, guidance cues can act by altering shaft adhesions. When a cellular cue was contacted by a filopodial tip, veil extension and shaft adhesions altered in concert. Contact with a Schwann cell induced veil advance and inhibited shaft adhesions. In contrast, contact with a posterior sclerotome cell prohibited veil advance and promoted shaft adhesions. These results show that veil advance is controlled by shaft adhesions and that guidance signal cascades can alter veil advance by altering these adhesions. Shaft adhesions thus differ functionally from two other adhesions identified on individual filopodia. Tip adhesions suffice to signal. Basal adhesions do not influence veil advance but are critical to filopodial initiation and dynamics. Individual growth cone filopodia thus develop three functionally distinct adhesions that are vital for both motility and navigation.
机译:在这项研究中,显示了在各个丝lop轴上的附着力可控制面纱(片状)的前进并受到引导提示的调节。使用光学记录,粘附标记和电子显微镜在感觉生长锥的单个丝状伪足中检测到粘附。面纱容易沿着缺乏足柄粘连的丝状伪足前进,但是很少沿着显示出轴粘连的丝状伪足前进。改变附着力的实验表明,这种关系不是由于面纱在附着力增加时去除附着力所致。减少抗体的附着力可减少丝状伪足的比例,并伴有轴的附着力,并协调增加面纱的前进。而且,保持了抑制性关系:在保留轴杆粘连的单个丝状伪足上,面纱仍然无法前进。这些结果支持了轴粘附抑制面纱前进的想法。特别有趣的是,引导提示可以通过更改轴的附着力来起作用。当丝状尾端接触到细胞提示时,面纱延伸和轴杆粘连一致改变。与雪旺氏细胞接触会诱发面纱前进并抑制杆身粘连。相反,与后巩膜组细胞接触会阻止面纱前进并促进轴附着。这些结果表明,面纱的前进是由轴的附着力控制的,引导信号的级联可以通过改变这些附着力来改变面纱的前进。因此,轴的粘连在功能上不同于在个别丝状伪足上确定的其他两种粘连。尖端粘连足以发出信号。基底附着不影响面纱的前进,但对尾足的启动和动力学至关重要。因此,单个生长锥丝状伪足会形成三种功能截然不同的粘连,这对于运动性和导航至关重要。

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