Recurrent GNAQ mutation encoding T96S in natural killer/T cell lymphoma

自然杀伤/T 细胞淋巴瘤中编码 T96S 的复发性 GNAQ 突变

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作者:Zhaoming Li #, Xudong Zhang #, Weili Xue #, Yanjie Zhang #, Chaoping Li, Yue Song, Mei Mei, Lisha Lu, Yingjun Wang, Zhiyuan Zhou, Mengyuan Jin, Yangyang Bian, Lei Zhang, Xinhua Wang, Ling Li, Xin Li, Xiaorui Fu, Zhenchang Sun, Jingjing Wu, Feifei Nan, Yu Chang, Jiaqin Yan, Hui Yu, Xiaoyan Feng, Guan

Abstract

Natural killer/T cell lymphoma (NKTCL) is a rare and aggressive malignancy with a higher prevalence in Asia and South America. However, the molecular genetic mechanisms underlying NKTCL remain unclear. Here, we identify somatic mutations of GNAQ (encoding the T96S alteration of Gαq protein) in 8.7% (11/127) of NKTCL patients, through whole-exome/targeted deep sequencing. Using conditional knockout mice (Ncr1-Cre-Gnaqfl/fl), we demonstrate that Gαq deficiency leads to enhanced NK cell survival. We also find that Gαq suppresses tumor growth of NKTCL via inhibition of the AKT and MAPK signaling pathways. Moreover, the Gαq T96S mutant may act in a dominant negative manner to promote tumor growth in NKTCL. Clinically, patients with GNAQ T96S mutations have inferior survival. Taken together, we identify recurrent somatic GNAQ T96S mutations that may contribute to the pathogenesis of NKTCL. Our work thus has implications for refining our understanding of the genetic mechanisms of NKTCL and for the development of therapies.

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