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首页> 外文期刊>Human Molecular Genetics >Abnormal creatine transport of mutations in monocarboxylate transporter 12 (MCT12) found in patients with age-related cataract can be partially rescued by exogenous chaperone CD147
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Abnormal creatine transport of mutations in monocarboxylate transporter 12 (MCT12) found in patients with age-related cataract can be partially rescued by exogenous chaperone CD147

机译:在与年龄相关性白内障患者中发现的单羧酸盐转运蛋白12(MCT12)中的异常肌酸突变可以通过外源伴侣CD147部分拯救

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摘要

Membrane transporters influence biological functions in the ocular lens. Here, we investigate the monocarboxylate transporter 12 (MCT12), also called creatine transporter 2 (CRT2), which is found in the ocular lens and is involved in cataract. As the age-related form affects about half of the population world-wide, understanding relevant pathomechanisms is a prerequisite for exploring non-invasive treatments. We screened the coding exons of the gene SLC16A12 in 877 patients from five cohorts, including Caucasian and Asian ethnicities. A previously identified risk factor, SNP rs3740030, displayed different frequencies in the Asian cohorts but risk could not be established. In 15 patients 13 very rare heterozygous nucleotide substitutions were identified, of which eight led to non-synonymous and four to synonymous amino acid exchanges and one mapped to the canonical splice site in intron 3. Their impact on creatine transport was tested in Xenopus laevis oocytes and human HEK293T cells. Four variants (p.Ser158Pro, p.Gly205Val, p.Pro395Gln and p.Ser453Arg) displayed severe reduction in both model systems, indicating conserved function. Two of these, p. Gly205Val, and p.Ser453Arg, did not localize to the oocyte membrane, suggesting possible impacts on protein interactions for transporter processing. In support, exogenously supplied excess of MCT12's chaperone CD147 in HEK293T cells led to a partial recovery of the defective uptake activity from p. Gly205Val and also from mutant p. Pro395Gln, which did localize to the membrane. Our findings provide first insight in the molecular requirements of creatine transporter, with particular emphasis on rescuing effects by its chaperone CD147, which can provide useful pharmacological information for substrate delivery.
机译:膜转运蛋白在眼镜中影响生物学功能。这里,我们研究了在眼部透镜中发现的单羧酸盐转运蛋白12(MCT12),也称为肌酸转运蛋白2(CRT2),并涉及白内障。随着年龄相关的形式影响全世界人口的一半,了解相关的公路机制是探索非侵入性治疗的先决条件。我们筛选了来自五个队列的877名患者的基因SLC16A12的编码外显子,包括白种人和亚洲种族。先前识别的风险因素SNP RS3740030,在亚洲群组中显示出不同的频率,但风险无法建立。在15例患者中,鉴定了13例非常罕见的杂合核苷酸取代,其中八个导致非同义氨基酸交换,其中4种映射到Intron 3中的典型剪接部位。它们在Xenopus Laevis卵母细胞中测试了对肌酸输送的影响和人的HEK293T细胞。四个变体(P.SER158Pro,P.Gly205Val,P.Pro395GLN和P.SER453ARG)在两个模型系统中显示出严重减少,表明保守功能。其中两个,p。 GLY205VAL和P.SER453ARG未定位到卵母细胞膜,表明对运输过程中对蛋白质相互作用的影响。在支持下,HEK293T细胞中的外源供应过量的MCT12伴侣CD147导致了来自p的缺陷摄取活性的部分恢复。 gly205Val和突变体p。 pro395gln,它对膜定位。我们的研究结果提供了肌酸输送器的分子要求的首次见解,特别强调其伴侣CD147的救援效果,这可以为底物输送提供有用的药理学信息。

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