Fiorentini C, Falzano L, Fabbri A, Stringaro A, Logozzi M, Travaglione S, Contamin S, Arancia G, Malorni W, Fais S
Department of Ultrastructures, Istituto Superiore di Sanità, 00161, Rome, Italy.
Mol Biol Cell. 2001 Jul;12(7):2061-73. doi: 10.1091/mbc.12.7.2061.
Macropinocytosis, a ruffling-driven process that allows the capture of large material, is an essential aspect of normal cell function. It can be either constitutive, as in professional phagocytes where it ends with the digestion of captured material, or induced, as in epithelial cells stimulated by growth factors. In this case, the internalized material recycles back to the cell surface. We herein show that activation of Rho GTPases by a bacterial protein toxin, the Escherichia coli cytotoxic necrotizing factor 1 (CNF1), allowed epithelial cells to engulf and digest apoptotic cells in a manner similar to that of professional phagocytes. In particular, we have demonstrated that 1) the activation of all Rho, Rac, and Cdc42 by CNF1 was essential for the capture and internalization of apoptotic cells; and 2) such activation allowed the discharge of macropinosomal content into Rab7 and lysosomal associated membrane protein-1 acidic lysosomal vesicles where the ingested particles underwent degradation. Taken together, these findings indicate that CNF1-induced "switching on" of Rho GTPases may induce in epithelial cells a scavenging activity, comparable to that exerted by professional phagocytes. The activation of such activity in epithelial cells may be relevant, in mucosal tissues, in supporting or integrating the scavenging activity of resident macrophages.
巨胞饮作用是一种由膜 ruffling 驱动的过程,可捕获大分子物质,是正常细胞功能的一个重要方面。它可以是组成性的,如在专业吞噬细胞中,最终会消化捕获的物质;也可以是诱导性的,如在生长因子刺激的上皮细胞中。在这种情况下,内化的物质会循环回到细胞表面。我们在此表明,细菌蛋白毒素大肠杆菌细胞毒性坏死因子 1(CNF1)激活 Rho GTP 酶,可使上皮细胞以类似于专业吞噬细胞的方式吞噬和消化凋亡细胞。具体而言,我们已经证明:1)CNF1 对所有 Rho、Rac 和 Cdc42 的激活对于凋亡细胞的捕获和内化至关重要;2)这种激活可使巨胞饮体内容物排入 Rab7 和溶酶体相关膜蛋白 1 的酸性溶酶体囊泡中,摄入的颗粒在其中进行降解。综上所述,这些发现表明,CNF1 诱导的 Rho GTP 酶“开启”可能在上皮细胞中诱导一种清除活性,类似于专业吞噬细胞所发挥的活性。上皮细胞中这种活性的激活在黏膜组织中可能与支持或整合驻留巨噬细胞的清除活性相关。