Genetic mutations in the molecular pathogenesis of gastrointestinal stromal tumor

D. Saravanan, Monisha Mohan
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Abstract

Gastrointestinal stromal tumors are mesenchymal tumors which predominantly originate from the interstitial cells of Cajal in the intestinal lining. Around ~85% of malignant GISTs possess activating mutations in the tyrosine kinase receptors KIT or PDGFRA. The driver mutations in genes other than KIT or PDGFRA account for around 15% GISTs and belong to highly heterogeneous groups called wild-type GISTs. Around 20–40% of WT-GISTS are deficient for the succinate dehydrogenase complex (SDHA, SDHB, SDHC, SDHD). Mutations in SDH cause the accumulation of oncometabolite succinate that increases the level of HIF1α which enhances the transcription of several genes including IGF1, IGF2, and VEGF inducing the proliferation of the cancer cells. The remaining WT-GISTS are associated with mutations in BRAF, loss-of-function of NF1, hyperactivation FGFR, inactivation of tumor suppressor genes (p53 and dystrophin), and mutations in DNA damage response genes such as RAD51 and BRCA2 which results in the activation of the PI3K/mTOR or RAS/RAF/MAPK signaling cascade. Therefore, understanding the mutational status and molecular characterization of GIST plays a very crucial role in the overall management of GIST.
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胃肠道间质瘤分子发病机制中的基因突变
胃肠道间质瘤是一种主要起源于肠内膜Cajal间质细胞的间质瘤。约85%的恶性胃肠道间质瘤具有酪氨酸激酶受体KIT或PDGFRA的激活突变。KIT或PDGFRA以外基因的驱动突变约占gist的15%,属于高度异质的群体,称为野生型gist。约20-40%的wt - gist缺乏琥珀酸脱氢酶复合物(SDHA, SDHB, SDHC, SDHD)。SDH突变引起肿瘤代谢物琥珀酸盐的积累,从而增加HIF1α的水平,从而增强包括IGF1、IGF2和VEGF在内的几种基因的转录,从而诱导癌细胞的增殖。其余的wt - gist与BRAF突变、NF1功能丧失、FGFR过度激活、肿瘤抑制基因(p53和肌营养不良蛋白)失活以及DNA损伤反应基因(如RAD51和BRCA2)突变相关,这些突变导致PI3K/mTOR或RAS/RAF/MAPK信号级联激活。因此,了解GIST的突变状态和分子特征对GIST的整体治疗具有至关重要的作用。
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