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A growth hormone receptor SNP promotes lung cancer by impairment of SOCS2-mediated degradation

生长激素受体 SOCS2 生物 自分泌信号 受体 癌症研究 信号转导 IGFBP3型 旁分泌信号 内分泌学 内科学 细胞生物学 分子生物学 生长因子 癌症 生物化学 遗传学 激素 医学 抑制器 生长激素
作者
Yash Chhabra,Hau Yan Wong,Louise F. Nikolajsen,Helena Steinocher,Andreas Papadopulos,Kathryn A. Tunny,Frédéric A. Meunier,Aaron G. Smith,Birthe B. Kragelund,Adam Brooks,Michael J. Waters
出处
期刊:Oncogene [Springer Nature]
卷期号:37 (4): 489-501 被引量:41
标识
DOI:10.1038/onc.2017.352
摘要

Both humans and mice lacking functional growth hormone (GH) receptors are known to be resistant to cancer. Further, autocrine GH has been reported to act as a cancer promoter. Here we present the first example of a variant of the GH receptor (GHR) associated with cancer promotion, in this case lung cancer. We show that the GHRP495T variant located in the receptor intracellular domain is able to prolong the GH signal in vitro using stably expressing mouse pro-B-cell and human lung cell lines. This is relevant because GH secretion is pulsatile, and extending the signal duration makes it resemble autocrine GH action. Signal duration for the activated GHR is primarily controlled by suppressor of cytokine signalling 2 (SOCS2), the substrate recognition component of the E3 protein ligase responsible for ubiquitinylation and degradation of the GHR. SOCS2 is induced by a GH pulse and we show that SOCS2 binding to the GHR is impaired by a threonine substitution at Pro 495. This results in decreased internalisation and degradation of the receptor evident in TIRF microscopy and by measurement of mature (surface) receptor expression. Mutational analysis showed that the residue at position 495 impairs SOCS2 binding only when a threonine is present, consistent with interference with the adjacent Thr494. The latter is key for SOCS2 binding, together with nearby Tyr487, which must be phosphorylated for SOCS2 binding. We also undertook nuclear magnetic resonance spectroscopy approach for structural comparison of the SOCS2 binding scaffold Ile455-Ser588, and concluded that this single substitution has altered the structure of the SOCS2 binding site. Importantly, we find that lung BEAS-2B cells expressing GHRP495T display increased expression of transcripts associated with tumour proliferation, epithelial-mesenchymal transition and metastases (TWIST1, SNAI2, EGFR, MYC and CCND1) at 2 h after a GH pulse. This is consistent with prolonged GH signalling acting to promote cancer progression in lung cancer.
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