Zhu Xiao-Juan, Wang Cheng-Zhong, Dai Peng-Gao, Xie Yi, Song Ning-Ning, Liu Yu, Du Quan-Sheng, Mei Lin, Ding Yu-Qiang, Xiong Wen-Cheng
Program of Developmental Neurobiology, IMMAG and Department of Neurology, Medical College of Georgia, Augusta, GA 30912, USA.
Nat Cell Biol. 2007 Feb;9(2):184-92. doi: 10.1038/ncb1535. Epub 2007 Jan 21.
Netrins regulate axon path-finding during development, but the underlying mechanisms are not well understood. Here, we provide evidence for the involvement of the unconventional myosin X (Myo X) in netrin-1 function. We find that Myo X interacts with the netrin receptor deleted in colorectal cancer (DCC) and neogenin, a DCC-related protein. Expression of Myo X redistributes DCC to the cell periphery or to the tips of neurites, whereas its silencing prevents DCC distribution in neurites. Moreover, expression of DCC, but not neogenin, stimulates Myo X-mediated formation and elongation of filopodia, suggesting that Myo X function may be differentially regulated by DCC and neogenin. The involvement of Myo X in netrin-1 function was further supported by the effects of inhibiting Myo X function in neurons. Cortical explants derived from mouse embryos expressing a motor-less Myo X exhibit reduced neurite outgrowth in response to netrin-1 and chick commissural neurons expressing the motor-less Myo X, or in which Myo X is silenced using microRNA (miRNA), show impaired axon projection in vivo. Taken together, these results identify a novel role for Myo X in regulating netrin-1 function.
在发育过程中,网蛋白调节轴突导向,但其潜在机制尚未完全了解。在此,我们提供了非传统肌球蛋白X(Myo X)参与网蛋白-1功能的证据。我们发现Myo X与结直肠癌缺失的网蛋白受体(DCC)以及一种DCC相关蛋白新生蛋白相互作用。Myo X的表达将DCC重新分布到细胞周边或神经突的末端,而其沉默则阻止DCC在神经突中的分布。此外,DCC而非新生蛋白的表达刺激Myo X介导的丝状伪足的形成和伸长,这表明Myo X的功能可能受到DCC和新生蛋白的差异调节。在神经元中抑制Myo X功能的效应进一步支持了Myo X参与网蛋白-1功能。源自表达无运动功能Myo X的小鼠胚胎的皮质外植体对网蛋白-1的反应显示神经突生长减少,而表达无运动功能Myo X的鸡连合神经元或使用微小RNA(miRNA)使Myo X沉默的鸡连合神经元在体内显示轴突投射受损。综上所述,这些结果确定了Myo X在调节网蛋白-1功能中的新作用。