Laboratory of Neuroscience, Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.
PLoS One. 2012;7(8):e43058. doi: 10.1371/journal.pone.0043058. Epub 2012 Aug 8.
Various membrane proteins are shed by proteinases, constitutively and/or when stimulated by external signals. While the physiological significance of external signal-induced cleavages has been intensely investigated, relatively little is known about the function of constitutive cleavages. Alcadeinα (Alcα; also called Calsyntenin-1) is an evolutionarily conserved type I single-pass transmembrane protein that binds to kinesin-1 light chain (KLC) to activate kinesin-1's transport of Alcα-containing vesicles. We found that Alcα was constitutively and efficiently cleaved to liberate its ectodomain into the extracellular space, and that full-length Alcα protein was rarely detected on the cell surface. The secretion efficiency of the ectodomain was unaltered by a mutation that both abolished Alcα's KLC-binding activity and attenuated its peripheral transport, suggesting that Alcα's cleavage occurred, at least partly, en route to the cell surface. We further demonstrated that uncleavable mutant Alcα proteins readily accumulated on the cell surface and induced aberrant peripheral recruitment of KLC1 and kinesin heavy chain. Our observations suggest that Alcα is efficiently processed in part to minimize the inappropriate peripheral retention of kinesin-1. This role might exemplify the functional relevance of the constitutive cleavage of single-pass transmembrane proteins.
多种膜蛋白可被蛋白酶切割,这种切割既可以是组成型的,也可以是在受到外部信号刺激时发生的。虽然人们对外部信号诱导的切割的生理意义进行了深入研究,但对于组成型切割的功能却知之甚少。Alcadeinα(Alcα;也称为 Calsyntenin-1)是一种进化上保守的 I 型单次跨膜蛋白,它与驱动蛋白轻链(KLC)结合,以激活驱动蛋白-1运输含 Alcα的囊泡。我们发现 Alcα 可被组成型且有效地切割,从而将其胞外结构域释放到细胞外间隙中,并且很少在细胞表面检测到全长 Alcα 蛋白。一个突变既消除了 Alcα 的 KLC 结合活性,又减弱了其周围运输,但其对胞外结构域分泌效率没有影响,这表明 Alcα 的切割至少部分发生在到达细胞表面的过程中。我们进一步证明,不可切割的突变 Alcα 蛋白很容易在细胞表面积累,并诱导 KLC1 和驱动蛋白重链异常的周围募集。我们的观察结果表明,Alcα 被有效加工,部分原因是为了最大限度地减少驱动蛋白-1的异常外周保留。这种作用可能体现了单次跨膜蛋白组成型切割的功能相关性。