Department of Cell, Developmental, and Integrative Biology, University of Alabama at Birmingham, 1900 University Blvd, Birmingham, AL, 35294-0006, USA.
Department of Cell, Developmental, and Integrative Biology, University of Alabama at Birmingham, 1900 University Blvd, Birmingham, AL, 35294-0006, USA.
Dev Biol. 2021 Feb;470:10-20. doi: 10.1016/j.ydbio.2020.10.015. Epub 2020 Nov 5.
VAMP/synaptobrevin-associated protein B (VAP-B) is a type II ER membrane protein, but its N-terminal MSP domain (MSPd) can be cleaved and secreted. Mutations preventing the cleavage and secretion of MSPd have been implicated in cases of human neurodegenerative diseases. The site of VAP cleavage and the tissues capable in releasing the processed MSPd are not understood. In this study, we analyze the C. elegans VAP-B homolog, VPR-1, for its processing and secretion from the intestine. We show that intestine-specific expression of an N-terminally FLAG-tagged VPR-1 rescues underdeveloped gonad and sterility defects in vpr-1 null hermaphrodites. Immunofluorescence studies reveal that the tagged intestinal expressed VPR-1 is present at the distal gonad. Mass spectrometry analysis of a smaller product of the N-terminally tagged VPR-1 identifies a specific cleavage site at Leu156. Mutation of the leucine results in loss of gonadal MSPd signal and reduced activity of the mutant VPR-1. Thus, we report for the first time the cleavage site of VPR-1 and provide direct evidence that intestinally expressed VPR-1 can be released and signal in the distal gonad. These results establish the foundation for further exploration of VAP cleavage, MSPd secretion, and non-cell-autonomous signaling in development and diseases.
VAMP/synaptobrevin 相关蛋白 B(VAP-B)是一种内质网 II 型膜蛋白,但它的 N 端 MSP 结构域(MSPd)可被切割和分泌。防止 MSPd 切割和分泌的突变与人类神经退行性疾病有关。VAP 切割的位点和能够释放加工后的 MSPd 的组织尚不清楚。在这项研究中,我们分析了秀丽隐杆线虫的 VAP-B 同源物 VPR-1,以研究其在肠道中的加工和分泌情况。我们发现,在肠道中特异性表达 N 端带有 FLAG 标签的 VPR-1,可以挽救 vpr-1 缺失型雌雄同体中发育不良的性腺和不育缺陷。免疫荧光研究显示,标记的肠道表达的 VPR-1 存在于远端性腺。对 N 端标记的 VPR-1 的较小产物进行质谱分析,确定了一个特定的切割位点在亮氨酸 156 位。亮氨酸突变导致性腺 MSPd 信号丢失和突变 VPR-1 活性降低。因此,我们首次报道了 VPR-1 的切割位点,并提供了直接证据表明肠道表达的 VPR-1 可以被释放并在远端性腺中发出信号。这些结果为进一步探索 VAP 切割、MSPd 分泌以及发育和疾病中的非细胞自主信号提供了基础。