School of Biosciences, Cardiff University, Museum Avenue, Cardiff, CF10 3AT, UK.
School of Biosciences, Cardiff University, Museum Avenue, Cardiff, CF10 3AT, UK
Development. 2018 Nov 19;145(22):dev165936. doi: 10.1242/dev.165936.
TWE-PRIL is a naturally occurring fusion protein of components of two TNF superfamily members: the extracellular domain of APRIL; and the intracellular and transmembrane domains of TWEAK with no known function. Here, we show that mice (which lack APRIL and TWE-PRIL) exhibited overgrowth of sympathetic fibres , and sympathetic neurons cultured from these mice had significantly longer axons than neurons cultured from wild-type littermates. Enhanced axon growth from sympathetic neurons cultured from mice was prevented by expressing full-length TWE-PRIL in these neurons but not by treating them with soluble APRIL. Soluble APRIL, however, enhanced axon growth from the sympathetic neurons of wild-type mice. siRNA knockdown of TWE-PRIL but not siRNA knockdown of APRIL alone also enhanced axon growth from wild-type sympathetic neurons. Our work reveals the first and physiologically relevant role for TWE-PRIL and suggests that it mediates reverse signalling.
TWE-PRIL 是两种 TNF 超家族成员的成分的天然融合蛋白:APRIL 的细胞外结构域;以及 TWEAK 的细胞内和跨膜结构域,没有已知的功能。在这里,我们表明, 缺乏 APRIL 和 TWE-PRIL)的小鼠表现出交感神经纤维过度生长,并且从这些小鼠培养的交感神经元的轴突比从野生型同窝仔培养的神经元长得多。从 小鼠培养的交感神经元中表达全长 TWE-PRIL 可防止增强的轴突生长,但用可溶性 APRIL 处理则不能。然而,可溶性 APRIL 增强了来自野生型小鼠的交感神经元的轴突生长。TWE-PRIL 的 siRNA 敲低而非单独的 APRIL 的 siRNA 敲低也增强了来自野生型交感神经元的轴突生长。我们的工作揭示了 TWE-PRIL 的第一个也是生理相关的作用,并表明它介导反向信号。