Yang N, Leung E L-H, Liu C, Li L, Eguether T, Jun Yao X-J, Jones E C, Norris D A, Liu A, Clark R A, Roop D R, Pazour G J, Shroyer K R, Chen J
Department of Pathology, Stony Brook University, Stony Brook, NY, USA.
State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology, Macau, China.
Oncogene. 2017 Aug 31;36(35):4997-5005. doi: 10.1038/onc.2017.117. Epub 2017 May 1.
Inturned (INTU), a cilia and planar polarity effector, performs prominent ciliogenic functions during morphogenesis, such as in the skin. INTU is expressed in adult tissues but its role in tissue maintenance is unknown. Here, we report that the expression of the INTU gene is aberrantly elevated in human basal cell carcinoma (BCC), coinciding with increased primary cilia formation and activated hedgehog (Hh) signaling. Disrupting Intu in an oncogenic mutant Smo (SmoM2)-driven BCC mouse model prevented the formation of BCC through suppressing primary cilia formation and Hh signaling, suggesting that Intu performs a permissive role during BCC formation. INTU is essential for intraflagellar transport A complex assembly during ciliogenesis. To further determine whether Intu is directly involved in the activation of Hh signaling downstream of ciliogenesis, we examined the Hh signaling pathway in mouse embryonic fibroblasts, which readily responds to the Hh pathway activation. Depleting Intu blocked Smo agonist-induced Hh pathway activation, whereas the expression of Gli2ΔN, a constitutively active Gli2, restored Hh pathway activation in Intu-deficient cells, suggesting that INTU functions upstream of Gli2 activation. In contrast, overexpressing Intu did not promote ciliogenesis or Hh signaling. Taken together, data obtained from this study suggest that INTU is indispensable during BCC tumorigenesis and that its aberrant upregulation is likely a prerequisite for primary cilia formation during Hh-dependent tumorigenesis.
内翻蛋白(INTU)是一种纤毛和平面极性效应蛋白,在形态发生过程中,如在皮肤中,发挥着重要的纤毛生成功能。INTU在成体组织中表达,但其在组织维持中的作用尚不清楚。在此,我们报告INTU基因在人类基底细胞癌(BCC)中异常升高,这与初级纤毛形成增加和刺猬信号通路(Hh)激活相一致。在致癌突变体Smo(SmoM2)驱动的BCC小鼠模型中破坏Intu可通过抑制初级纤毛形成和Hh信号通路来阻止BCC的形成,这表明Intu在BCC形成过程中发挥了促进作用。INTU对于纤毛发生过程中的鞭毛内运输复合体组装至关重要。为了进一步确定Intu是否直接参与纤毛发生下游的Hh信号通路激活,我们在易于对Hh信号通路激活做出反应的小鼠胚胎成纤维细胞中检测了Hh信号通路。敲除Intu可阻断Smo激动剂诱导的Hh信号通路激活,而组成型激活的Gli2(Gli2ΔN)的表达可恢复Intu缺陷细胞中的Hh信号通路激活,这表明INTU在Gli2激活的上游发挥作用。相反,过表达Intu并未促进纤毛发生或Hh信号通路激活。综上所述,本研究获得的数据表明INTU在BCC肿瘤发生过程中不可或缺,其异常上调可能是Hh依赖性肿瘤发生过程中初级纤毛形成的先决条件。