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环磷酸腺苷(cAMP)和丝裂原活化蛋白激酶(MAPK)信号通路在由点突变组成型激活的促甲状腺激素受体(TSHR)基因诱导小鼠3T3成纤维细胞转化中的作用

Role of the cAMP and MAPK pathways in the transformation of mouse 3T3 fibroblasts by a TSHR gene constitutively activated by point mutation.

作者信息

Du Villard J A, Wicker R, Crespo P, Russo D, Filetti S, Gutkind J S, Sarasin A, Suárez H G

机构信息

Laboratoire d'Instabilité Génétique et Cancer (UPR 2169), Institut de Recherches sur le Cancer, CNRS, Villejuif, France.

出版信息

Oncogene. 2000 Oct 5;19(42):4896-905. doi: 10.1038/sj.onc.1203852.

Abstract

Constitutive activating mutations of the TSHR gene, have been detected in about 30 per cent of hyperfunctioning human thyroid adenomas and in a minority of differentiated thyroid carcinomas. The mutations activating the TSHR gene(s) in the thyroid carcinomas, were located at the codon 623 changing an Ala to a Ser (GCC-->TCC) or in codon 632 changing a Thr to Ala or Ile (ACC-->GCC or ACC-->ATC). In order to study if the constitutively activated TSHR gene(s) has played a role in the determination of the malignant phenotype presented by these tumors, we investigated: (1) the transforming capacity after transfection of mouse 3T3 cells, of a TSHR cDNA activated by an Ala-->Ser mutation in codon 623 or an Thr-->Ile mutation in codon 632 and (2) the pathway(s) eventually responsible(s) for the malignant phenotype of the cells transformed by these constitutively activated TSHR cDNAs. Our results show that (1) the TSHR(M623) or (M632) cDNAs give rise to 3T3 clones presenting a fully neoplastic phenotype (growth in agar and nude mouse tumorigenesis); this phenotype was weaker in the cells transformed by the 632 cDNA; (2) suggest that the fully transformed phenotype of our 3T3 cells, may be the consequence of the additive effect of the activation of at least two different pathways: the cAMP pathway through G(alpha)s and the Ras dependent MAPK pathway through G(beta)gamma and PI3K and (3) show that the PI3K isoform playing a key role as an effector in the MAPK pathway activation in our 3T3-transformed cells is PI3Kgamma. Signaling from PI3Kgamma to MAPK appears to require in our murine cellular system a tyrosine kinase (still not characterized), Shc, Grb2, Sos, Ras and Raf. It is proposed that the constitutively activated TSHR genes detected in the thyroid carcinomas, may have played an oncogenic role, participating in their development through these two pathways.

摘要

在约30%的高功能人类甲状腺腺瘤以及少数分化型甲状腺癌中,已检测到促甲状腺激素受体(TSHR)基因的组成性激活突变。甲状腺癌中激活TSHR基因的突变位于密码子623,导致丙氨酸(Ala)变为丝氨酸(Ser,GCC→TCC),或位于密码子632,导致苏氨酸(Thr)变为丙氨酸或异亮氨酸(ACC→GCC或ACC→ATC)。为了研究组成性激活的TSHR基因是否在这些肿瘤所呈现的恶性表型的决定中发挥了作用,我们进行了以下研究:(1)将密码子623处由丙氨酸→丝氨酸突变或密码子632处由苏氨酸→异亮氨酸突变激活后的TSHR cDNA转染小鼠3T3细胞后的转化能力;(2)最终导致由这些组成性激活的TSHR cDNA转化的细胞出现恶性表型的信号通路。我们的结果表明:(1)TSHR(M623)或(M632)cDNA可产生呈现完全肿瘤表型(在琼脂中生长及裸鼠致瘤)的3T3克隆;这种表型在由632 cDNA转化的细胞中较弱;(2)提示我们的3T3细胞的完全转化表型可能是至少两条不同信号通路激活的累加效应的结果:通过G(α)s的cAMP信号通路以及通过G(β)γ和PI3K的Ras依赖性MAPK信号通路;(3)表明在我们的3T3转化细胞中,作为MAPK信号通路激活的效应器发挥关键作用的PI3K同工型是PI3Kγ。在我们的小鼠细胞系统中,从PI3Kγ到MAPK的信号传导似乎需要一种酪氨酸激酶(仍未鉴定)、Shc、Grb2、Sos、Ras和Raf。有人提出,在甲状腺癌中检测到的组成性激活的TSHR基因可能发挥了致癌作用,通过这两条信号通路参与了它们的发生发展。

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