Lechuga Susana, Naydenov Nayden G, Feygin Alex, Jimenez Antonio J, Ivanov Andrei I
Department of Human and Molecular Genetics, Virginia Commonwealth University, Richmond, VA 23298, USA.
Department of Cell Biology, Genetics, and Physiology, University of Malaga, Malaga, Spain.
Biochem Biophys Res Commun. 2017 May 13;486(4):951-957. doi: 10.1016/j.bbrc.2017.03.135. Epub 2017 Mar 28.
A soluble N-ethylmaleimide-sensitive factor-attachment protein alpha (αSNAP) is a multifunctional scaffolding protein that regulates intracellular vesicle trafficking and signaling. In cultured intestinal epithelial cells, αSNAP has been shown to be essential for cell survival, motility, and adhesion; however, its physiologic functions in the intestinal mucosa remain unknown. In the present study, we used a mouse with a spontaneous hydrocephalus with hop gait (hyh) mutation of αSNAP to examine the roles of this trafficking protein in regulating intestinal epithelial homeostasis in vivo. Homozygous hyh mice demonstrated decreased expression of αSNAP protein in the intestinal epithelium, but did not display gross abnormalities of epithelial architecture in the colon and ileum. Such αSNAP depletion attenuated differentiation of small intestinal epithelial enteroids ex vivo. Furthermore, αSNAP-deficient mutant animals displayed reduced formation of lysozyme granules in small intestinal crypts and decreased expression of lysozyme and defensins in the intestinal mucosa, which is indicative of defects in Paneth cell differentiation. By contrast, development of Goblet cells, enteroendocrine cells, and assembly of enterocyte apical junctions was not altered in hyh mutant mice. Our data revealed a novel role of αSNAP in the intestinal Paneth cell differentiation in vivo.
可溶性N - 乙基马来酰亚胺敏感因子附着蛋白α(αSNAP)是一种多功能支架蛋白,可调节细胞内囊泡运输和信号传导。在培养的肠上皮细胞中,αSNAP已被证明对细胞存活、运动和黏附至关重要;然而,其在肠黏膜中的生理功能仍不清楚。在本研究中,我们使用了一只具有αSNAP自发脑积水伴跳跃步态(hyh)突变的小鼠,以研究这种运输蛋白在体内调节肠上皮稳态中的作用。纯合子hyh小鼠在肠上皮中αSNAP蛋白表达降低,但在结肠和回肠中未显示出上皮结构的明显异常。这种αSNAP的缺失减弱了体外小肠上皮类器官的分化。此外,αSNAP缺陷的突变动物在小肠隐窝中溶菌酶颗粒的形成减少,并且肠黏膜中溶菌酶和防御素的表达降低,这表明潘氏细胞分化存在缺陷。相比之下,hyh突变小鼠中杯状细胞、肠内分泌细胞的发育以及肠上皮细胞顶端连接的组装未发生改变。我们的数据揭示了αSNAP在体内肠潘氏细胞分化中的新作用。