Gurdon Institute, University of Cambridge, Cambridge, UK.
Department of Genetics, University of Cambridge, Cambridge, UK.
J Cell Biol. 2021 Apr 5;220(4). doi: 10.1083/jcb.202009116.
Cdc42-GTP is required for apical domain formation in epithelial cells, where it recruits and activates the Par-6-aPKC polarity complex, but how the activity of Cdc42 itself is restricted apically is unclear. We used sequence analysis and 3D structural modeling to determine which Drosophila GTPase-activating proteins (GAPs) are likely to interact with Cdc42 and identified RhoGAP19D as the only high-probability Cdc42GAP required for polarity in the follicular epithelium. RhoGAP19D is recruited by α-catenin to lateral E-cadherin adhesion complexes, resulting in exclusion of active Cdc42 from the lateral domain. rhogap19d mutants therefore lead to lateral Cdc42 activity, which expands the apical domain through increased Par-6/aPKC activity and stimulates lateral contractility through the myosin light chain kinase, Genghis khan (MRCK). This causes buckling of the epithelium and invasion into the adjacent tissue, a phenotype resembling that of precancerous breast lesions. Thus, RhoGAP19D couples lateral cadherin adhesion to the apical localization of active Cdc42, thereby suppressing epithelial invasion.
Cdc42-GTP 对于上皮细胞中顶域的形成是必需的,在顶域中它募集并激活 Par-6-aPKC 极性复合物,但 Cdc42 本身的活性如何被限制在顶域中尚不清楚。我们使用序列分析和 3D 结构建模来确定哪些果蝇 GTPase 激活蛋白(GAPs)可能与 Cdc42 相互作用,并确定 RhoGAP19D 是唯一需要的高概率 Cdc42GAP,可用于滤泡上皮的极性。RhoGAP19D 被α-连环蛋白招募到侧部 E-钙粘蛋白黏附复合物,导致活性 Cdc42 从侧域中排除。因此,rhogap19d 突变体导致侧部 Cdc42 活性增加,通过增加 Par-6/aPKC 活性刺激顶域扩张,并通过肌球蛋白轻链激酶 Genghis khan(MRCK)刺激侧部收缩性。这会导致上皮弯曲并侵入相邻组织,表现出类似于癌前乳腺病变的表型。因此,RhoGAP19D 将侧部钙粘蛋白黏附与活性 Cdc42 的顶部分布偶联起来,从而抑制上皮细胞的侵袭。