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秀丽隐杆线虫中G12介导的信号通路过度激活通过蛋白激酶C诱导发育性生长停滞。

Hyperactivation of the G12-mediated signaling pathway in Caenorhabditis elegans induces a developmental growth arrest via protein kinase C.

作者信息

van der Linden Alexander M, Moorman Celine, Cuppen Edwin, Korswagen Hendrik C, Plasterk Ronald H A

机构信息

Hubrecht Laboratory, Centre for Biomedical Genetics, Uppsalalaan 8, 3584 CT Utrecht, The Netherlands.

出版信息

Curr Biol. 2003 Mar 18;13(6):516-21. doi: 10.1016/s0960-9822(03)00164-7.

Abstract

The G(12) type of heterotrimeric G-proteins play an important role in development and behave as potent oncogenes in cultured cells. However, little is known about the molecular nature of the components that act in the G(12)-signaling pathway in an organism. We characterized a C. elegans Galpha subunit gene, gpa-12, which is a homolog of mammalian G(12)/G(13)alpha, and found that animals defective in gpa-12 are viable. Expression of activated GPA-12 (G(12)QL) results in a developmental growth arrest caused by a feeding behavior defect that is due to a dramatic reduction in pharyngeal pumping. To elucidate the molecular nature of the signaling pathways in which G(12) participates, we screened for suppressors of the G(12)QL phenotype. We isolated 50 suppressors that contain mutations in tpa-1, which encodes two protein kinase C isoforms, TPA-1A and TPA-1B, most similar to PKCtheta/delta. TPA-1 mediates the action of the tumor promoter PMA. Expression of G(12)QL and treatment of wild-type animals with PMA induce an identical growth arrest caused by inhibition of larval feeding, which is dependent on TPA-1A and TPA-1B function. These results suggest that TPA-1 is a downstream target of both G(12) signaling and PMA in modulating feeding and growth in C. elegans. Taken together, our findings provide a potential molecular mechanism for the transforming capability of G(12) proteins.

摘要

异源三聚体G蛋白的G(12)类型在发育过程中发挥重要作用,并且在培养细胞中表现为强效癌基因。然而,对于在生物体中G(12)信号通路中起作用的成分的分子本质知之甚少。我们鉴定了一种秀丽隐杆线虫Gα亚基基因gpa-12,它是哺乳动物G(12)/G(13)α的同源物,发现gpa-12有缺陷的动物是可行的。激活的GPA-12(G(12)QL)的表达导致发育性生长停滞,这是由进食行为缺陷引起的,该缺陷是由于咽部抽吸的显著减少。为了阐明G(12)参与的信号通路的分子本质,我们筛选了G(12)QL表型的抑制子。我们分离出50个抑制子,它们在tpa-1中含有突变,tpa-1编码两种蛋白激酶C亚型TPA-1A和TPA-1B,与PKCθ/δ最相似。TPA-1介导肿瘤启动子PMA的作用。G(12)QL的表达以及用PMA处理野生型动物会诱导相同的生长停滞,这是由幼虫进食抑制引起的,该抑制依赖于TPA-1A和TPA-1B的功能。这些结果表明,在调节秀丽隐杆线虫的进食和生长方面,TPA-1是G(12)信号和PMA的下游靶点。综上所述,我们的发现为G(12)蛋白的转化能力提供了一种潜在的分子机制。

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