Piper Ann-Katrin, Ross Samuel E, Redpath Gregory M, Lemckert Frances A, Woolger Natalie, Bournazos Adam, Greer Peter A, Sutton Roger B, Cooper Sandra T
Institute for Neuroscience and Muscle Research, Children's Hospital at Westmead, Sydney, NSW 2145, Australia; Discipline of Child and Adolescent Health, Faculty of Medicine, University of Sydney, Sydney, Australia.
Institute for Neuroscience and Muscle Research, Children's Hospital at Westmead, Sydney, NSW 2145, Australia.
Cell Signal. 2017 May;33:30-40. doi: 10.1016/j.cellsig.2017.02.009. Epub 2017 Feb 10.
Myoferlin and dysferlin are closely related members of the ferlin family of Ca-regulated vesicle fusion proteins. Dysferlin is proposed to play a role in Ca-triggered vesicle fusion during membrane repair. Myoferlin regulates endocytosis, recycling of growth factor receptors and adhesion proteins, and is linked to the metastatic potential of cancer cells. Our previous studies establish that dysferlin is cleaved by calpains during membrane injury, with the cleavage motif encoded by alternately-spliced exon 40a. Herein we describe the cleavage of myoferlin, yielding a membrane-associated dual C2 domain 'mini-myoferlin'. Myoferlin bears two enzymatic cleavage sites: a canonical cleavage site encoded by exon 38 within the C2 domain; and a second cleavage site in the linker adjacent to C2, encoded by alternately-spliced exon 38a, homologous to dysferlin exon 40a. Both myoferlin cleavage sites, when introduced into dysferlin, can functionally substitute for exon 40a to confer Ca-triggered calpain cleavage in response to membrane injury. However, enzymatic cleavage of myoferlin is complex, showing both constitutive or Ca-enhanced cleavage in different cell lines, that is not solely dependent on calpains-1 or -2. The functional impact of myoferlin cleavage was explored through signalling protein phospho-protein arrays revealing specific activation of ERK1/2 by ectopic expression of cleavable myoferlin, but not an uncleavable isoform. In summary, we molecularly define two enzymatic cleavage sites within myoferlin and demonstrate 'mini-myoferlin' can be detected in human breast cancer tumour samples and cell lines. These data further illustrate that enzymatic cleavage of ferlins is an evolutionarily preserved mechanism to release functionally specialized mini-modules.
肌铁蛋白和肌膜铁蛋白是钙调节囊泡融合蛋白ferlin家族中密切相关的成员。有人提出肌膜铁蛋白在膜修复过程中钙触发的囊泡融合中发挥作用。肌铁蛋白调节内吞作用、生长因子受体和粘附蛋白的循环利用,并与癌细胞的转移潜能有关。我们之前的研究表明,在膜损伤过程中,肌膜铁蛋白会被钙蛋白酶切割,其切割基序由可变剪接的外显子40a编码。在此,我们描述了肌铁蛋白的切割过程,产生了一种与膜相关的双C2结构域“迷你肌铁蛋白”。肌铁蛋白有两个酶切位点:一个由C2结构域内的外显子38编码的典型切割位点;另一个在与C2相邻的连接区,由可变剪接的外显子38a编码,与肌膜铁蛋白外显子40a同源。当将这两个肌铁蛋白切割位点引入肌膜铁蛋白时,它们都可以在功能上替代外显子40a,以在膜损伤时赋予钙触发的钙蛋白酶切割作用。然而,肌铁蛋白的酶切过程很复杂,在不同细胞系中表现出组成型或钙增强型切割,这不仅仅依赖于钙蛋白酶-1或-2。通过信号蛋白磷酸化蛋白阵列探索了肌铁蛋白切割的功能影响,结果显示可切割的肌铁蛋白异位表达可特异性激活ERK1/2,而不可切割的异构体则不能。总之,我们在分子水平上定义了肌铁蛋白内的两个酶切位点,并证明在人乳腺癌肿瘤样本和细胞系中可以检测到“迷你肌铁蛋白”。这些数据进一步说明,ferlin家族蛋白的酶切是一种进化上保守的机制,用于释放功能特化的迷你模块。