A canine mastocytoma with oncogenic c-kit activation by intra-exonic alternative splicing

Mengrui Li , Stephanie Vanegas , Mia R. Gonzalgo , Joseph A. Lacret , Wensi Tao , Sapna Deo , Sylvia Daunert , Jean-Marc Zingg
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Abstract

We report a subcutaneous mastocytoma in a mid-aged Italian greyhound dog with a small 41 bp genomic deletion of the c-kit gene leading to skipping of the authentic 3′-splice junction of intron 10. The shift to an alternative splice junction in exon 11 leads to a mis-spliced in-frame mRNA transcript with a 27 bp deletion of exon 11 coding for 9 amino acids in the juxtamembrane negative regulatory domain of c-kit tyrosine kinase. In the tumor, c-kit was activated as revealed by more pronounced c-kit-regulated signaling by the PI3K/Akt and G-coupled receptor pathways. The same 9 amino acids deletion was reported in several human gastrointestinal stromal tumors (GIST) pointing to a remarkable similarity of c-kit activation by small deletions and aberrant splicing in humans and dogs, independent of exact sequence context, tumor type and location. Interestingly, the alternative splice junction in exon 11 has been conserved in Primates but less in other Orders with increased body temperature such as ruminants. We hypothesize that elevated body temperature has acted as evolutionary pressure to eliminate the alternative splice site at this hotspot. At a molecular level, hyperthermia may increase the frequency of small deletions in the c-kit gene by facilitating base slipping or hindering repair. An RT-qPCR assay was developed to detect c-kit alternative splicing in tumors and cell lines exposed to hyperthermia. The molecular mechanisms of tumorigenesis are discussed.

Abstract Image

通过外显子内替代剪接激活致癌 c-kit 的犬乳腺细胞瘤
我们报告了一只中年意大利灰猎犬的皮下肥大细胞瘤,该犬的 c-kit 基因有一个 41 bp 的小基因组缺失,导致跳过了内含子 10 的正宗 3′-剪接接头。转到外显子 11 的另一个剪接接头导致了一个错误剪接的框架内 mRNA 转录本,其外显子 11 缺失 27 bp,编码 c-kit 酪氨酸激酶并膜负调控域中的 9 个氨基酸。在肿瘤中,c-kit 被激活,PI3K/Akt 和 G 偶联受体通路的 c-kit 调节信号更为明显。据报道,在几种人类胃肠道间质瘤(GIST)中也存在同样的 9 个氨基酸缺失,这表明在人类和狗中,c-kit 因小缺失和异常剪接而被激活的情况非常相似,与确切的序列上下文、肿瘤类型和位置无关。有趣的是,外显子 11 中的替代剪接接头在灵长类动物中得到了保留,但在反刍动物等体温升高的其他动物中保留较少。我们推测,体温升高在进化过程中产生了压力,从而消除了这一热点的替代剪接位点。在分子水平上,高热可能会通过促进碱基滑动或阻碍修复来增加 c-kit 基因小缺失的频率。我们开发了一种 RT-qPCR 检测方法,用于检测暴露于热疗的肿瘤和细胞系中 c-kit 基因的替代剪接。讨论了肿瘤发生的分子机制。
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来源期刊
Aspects of molecular medicine
Aspects of molecular medicine Molecular Biology, Molecular Medicine
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