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苏氨酸残基在受体酪氨酸激酶p+1环内对转移性癌细胞中STAT3组成型磷酸化的核心作用。

Central role of the threonine residue within the p+1 loop of receptor tyrosine kinase in STAT3 constitutive phosphorylation in metastatic cancer cells.

作者信息

Yuan Zheng-Long, Guan Ying-Jie, Wang Lijuan, Wei Wenyi, Kane Agnes B, Chin Y Eugene

机构信息

Department of Surgery Science, Brown University School of Medicine/Rhode Island Hospital, 593 Eddy St., Providence, RI 02903, USA.

出版信息

Mol Cell Biol. 2004 Nov;24(21):9390-400. doi: 10.1128/MCB.24.21.9390-9400.2004.

Abstract

The receptor tyrosine kinases (RTKs) RET, MET, and RON all carry the Met(p+1loop)-->Thr point mutation (i.e., 2B mutation), leading to the formation of tumors with high metastatic potential. Utilizing a novel antibody array, we identified constitutive phosphorylation of STAT3 in cells expressing the 2B mutation but not wild-type RET. MET or RON with the 2B mutation also constitutively phosphorylated STAT3. Members of the EPH, the only group of wild-type RTK that carry Thr(p+1loop) residue, are often expressed unexpectedly in different types of cancers. Ectopic expression of wild-type but not Thr(p+1loop)-->Met substituted EPH family members constitutively phosphorylated STAT3. In both RTK(Metp+1loop) with 2B mutation and wild-type EPH members the Thr(p+1loop) residue is required for constitutive kinase autophosphorylation and STAT3 recruitment. In multiple endocrine neoplasia 2B (MEN-2B) patients expressing RET(M918T), nuclear enrichment of STAT3 and elevated expression of CXCR4 was detected in metastatic thyroid C-cell carcinoma in the liver. In breast adenocarcinoma cell lines expressing multiple EPH members, STAT3 constitutively bound to the promoters of MUC1, MUC4, and MUC5B genes. Inhibiting STAT3 expression resulted in reduced expression of these metastasis-related genes and inhibited mobility. These findings provide insight into Thr(p+1loop) residue in RTK autophosphorylation and constitutive activation of STAT3 in metastatic cancer cells.

摘要

受体酪氨酸激酶(RTK)RET、MET和RON均携带Met(p + 1环)→Thr点突变(即2B突变),导致形成具有高转移潜能的肿瘤。利用一种新型抗体阵列,我们在表达2B突变而非野生型RET的细胞中鉴定出STAT3的组成性磷酸化。携带2B突变的MET或RON也组成性地磷酸化STAT3。EPH家族是唯一携带Thr(p + 1环)残基的野生型RTK组,其成员在不同类型的癌症中常常意外表达。野生型而非Thr(p + 1环)→Met取代的EPH家族成员的异位表达组成性地磷酸化STAT3。在具有2B突变的RTK(Met p + 1环)和野生型EPH成员中,Thr(p + 1环)残基对于组成性激酶自磷酸化和STAT3募集都是必需的。在表达RET(M918T)的多内分泌腺瘤2B(MEN - 2B)患者中,在肝脏转移性甲状腺C细胞癌中检测到STAT3的核富集和CXCR4表达升高。在表达多种EPH成员的乳腺腺癌细胞系中,STAT3组成性地结合到MUC1、MUC4和MUC5B基因的启动子上。抑制STAT3表达导致这些转移相关基因的表达降低并抑制迁移。这些发现为RTK自磷酸化中的Thr(p + 1环)残基以及转移癌细胞中STAT3的组成性激活提供了深入了解。

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