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Inactivating Mutation in the Prostaglandin Transporter Gene SLCO2A1 Associated With Familial Digital Clubbing Colon Neoplasia and NSAID Resistance

机译:前列腺素转运蛋白基因SLCO2A1的失活突变与家族性数字化俱乐部结肠瘤形成和NSAID抵抗相关

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摘要

HPGD and SLCO2A1 genes encode components of the prostaglandin catabolic pathway, HPGD encoding the degradative enzyme 15-PGDH, and SLCO2A1 encoding the prostaglandin transporter PGT that brings substrate to 15-PGDH. HPGD null mice show increased PGE2, marked susceptibility to developing colon tumors, and resistance to colon tumor prevention by NSAIDs. But in humans, HPGD and SLCO2A1 mutations have only been associated with familial digital clubbing. We here characterize a family with digital clubbing and early onset colon neoplasia. Whole exome sequencing identified a heterozygous nonsense mutation (G104X) in the SLCO2A1 gene segregating in three males with digital clubbing. Two of these males further demonstrated notably early onset colon neoplasia, one with an early onset colon cancer and another with an early onset sessile serrated colon adenoma. Two females also carried the mutation, and both these women developed sessile serrated colon adenomas without any digital clubbing. Males with clubbing also showed marked elevations in the levels of urinary prostaglandin E2 metabolite, PGE-M; whereas, female mutation carriers were in the normal range. Furthermore, in the male proband urinary PGE-M remained markedly elevated during NSAID treatment with either celecoxib or sulindac. Thus, in this human kindred, a null SLCO2A1 allele mimics the phenotype of the related HPGD null mouse, with increased prostaglandin levels that cannot be normalized by NSAID therapy, plus with increased colon neoplasia. The development of early onset colon neoplasia in male and female human SLCO2A1 mutation carriers suggests that disordered prostaglandin catabolism can mediate inherited susceptibility to colon neoplasia in man.
机译:HPGD和SLCO2A1基因编码前列腺素分解代谢途径的成分,HPGD编码降解酶15-PGDH,而SLCO2A1编码将底物带到15-PGDH的前列腺素转运蛋白PGT。 HPGD null小鼠显示PGE2增加,对发展中的结肠肿瘤具有明显的易感性,并且对NSAID预防结肠肿瘤具有抗性。但是在人类中,HPGD和SLCO2A1突变仅与家族性数字俱乐部有关。我们在这里描述的是一个具有数字化俱乐部和早期发作的结肠肿瘤的家庭。整个外显子组测序鉴定了SLCO2A1基因中的杂合性无义突变(G104X),该突变分离于三只具数字棍的男性中。这些男性中有两名进一步表现出明显的结肠癌早期发作,一名患有早期结肠癌,另一名患有无柄锯齿状结肠腺瘤。两名女性也携带该突变,这两名女性均发展出无柄锯齿状结肠腺瘤,而没有任何数字棍状。带有棍棒的男性也显示尿中前列腺素E2代谢产物PGE-M的水平明显升高。女性突变携带者在正常范围内。此外,在男性先证者中,在用塞来昔布或舒林酸进行NSAID治疗期间,尿中的PGE-M仍显着升高。因此,在这个人类亲属中,无效的SLCO2A1等位基因模拟了相关HPGD无效的小鼠的表型,前列腺素水平升高,而NSAID治疗无法使之升高,结肠肿瘤也增加。男性和女性人类SLCO2A1突变携带者中早期结肠癌的发展表明,前列腺素代谢紊乱可以介导人类对结肠癌的遗传易感性。

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