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Bap1 is a bona fide tumor suppressor: genetic evidence from mouse models carrying heterozygous germline Bap1 mutations

机译:Bap1是真正的肿瘤抑制因子:携带杂合种系Bap1突变的小鼠模型的遗传证据

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摘要

Individuals harboring inherited heterozygous germline mutations in BAP1 are predisposed to a range of benign and malignant tumor types, including malignant mesothelioma, melanoma, and kidney carcinoma. However, evidence to support a tumor suppressive role for BAP1 in cancer remains contradictory. To test experimentally whether BAP1 behaves as a tumor suppressor, we monitored spontaneous tumor development in three different mouse models with germline heterozygous mutations in Bap1, including two models in which the knock-in mutations are identical to those reported in human BAP1 cancer syndrome families. We observed spontaneous malignant tumors in 54 of 93 Bap1-mutant mice (58%) versus 4 of 43 (9%) wild-type littermates. All three Bap1-mutant models exhibited a high incidence and similar spectrum of neoplasms, including ovarian sex cord stromal tumors, lung and mammary carcinomas, and spindle cell tumors. Notably, we also observed malignant mesotheliomas in two Bap1-mutant mice, but not in any wild-type animals. We further confirmed that the remaining wild-type Bap1 allele was lost in both spontaneous ovarian tumors and mesotheliomas, resulting in the loss of Bap1 expression. Additional studies revealed that asbestos exposure induced a highly significant increase in the incidence of aggressive mesotheliomas in the two mouse models carrying clinically relevant Bap1 mutations compared with asbestos-exposed wild-type littermates. Collectively, these findings provide genetic evidence that Bap1 is a bona fide tumor suppressor gene, and offer key insights into the contribution of carcinogen exposure to enhanced cancer susceptibility.
机译:在BAP1中携带遗传杂合子种系突变的个体易患一系列良性和恶性肿瘤,包括恶性间皮瘤,黑色素瘤和肾癌。但是,支持BAP1在癌症中具有抑癌作用的证据仍然矛盾。为了通过实验测试BAP1是否发挥抑癌作用,我们在Bap1的种系杂合突变的三种不同小鼠模型中监测了自发性肿瘤的发展,其中包括两种敲入突变与人类BAP1癌症综合征家族中报道的突变相同的模型。我们在93例Bap1突变小鼠中的54例(58%)中观察到了自发性恶性肿瘤,而43例野生型同窝小鼠中的4例(9%)中观察到了。所有这三个Bap1突变模型均显示出高发率和相似范围的肿瘤,包括卵巢性索间质瘤,肺癌和乳腺癌以及梭形细胞肿瘤。值得注意的是,我们还在两只Bap1突变小鼠中观察到恶性间皮瘤,但在任何野生型动物中均未观察到。我们进一步证实,剩余的野生型Bap1等位基因在自发性卵巢肿瘤和间皮瘤中均丢失,从而导致Bap1表达的丢失。其他研究表明,与暴露于石棉的野生型同窝仔相比,暴露于石棉的两种带有临床相关Bap1突变的小鼠模型中侵袭性间皮瘤的发生率显着增加。总的来说,这些发现提供了遗传学证据,证明Bap1是真正的肿瘤抑制基因,并为致癌物暴露对增强癌症易感性的贡献提供了重要见解。

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