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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Functional analysis of melanocortin-4-receptor mutants identified in severely obese subjects living in Southern Italy.
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Functional analysis of melanocortin-4-receptor mutants identified in severely obese subjects living in Southern Italy.

机译:在生活在意大利南部的严重肥胖受试者中发现的melanocortin-4-receptor突变体的功能分析。

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摘要

The melanocortin-4 receptor (MC4R) is involved in regulating energy homeostasis; mutations in this gene have been associated with 1-5% of early-onset human obesity. The aim of this study was to functionally characterize MC4R mutations identified in morbidly obese subjects living in Southern Italy. We studied their ligand binding, signaling pathway and subcellular localization. As expected, mutants Q43X and S19fsX51, which produce truncated forms of receptor, were devoid of activity. The activity of mutants W174C and A175T were very different even though the mutations are adjacent and are in the same transmembrane helix (TMH). In fact, the production and expression of mutant A175T on the plasma-membrane (PM) was similar to that of the wild-type (wt) receptor and the mutant retained 70% of wt receptor activity; on the contrary, the production of W174C mutant in the cytoplasm was similar to that of the wt receptor and mutant A175T but was only barely detectable on the PM and was devoid of activity. Confocal microscopy showed that W174C remained entrapped in the endoplasmic reticulum (ER) of the cells. Structural analysis showed that substitution of Trp174, located in the middle of TMH4 and 100% conserved in all known MC4Rs, with Cys could impair the relative orientation of TMH2 and TMH4 thereby affecting the overall protein architecture. Furthermore, co-expression studies showed that mutant A175T but not W174C had a dominant negative effect on the wt receptor activity.
机译:黑皮质素4受体(MC4R)参与调节能量稳态。该基因的突变与早发性人类肥胖症的1-5%有关。这项研究的目的是在功能上表征居住在意大利南部的病态肥胖受试者中发现的MC4R突变。我们研究了它们的配体结合,信号传导途径和亚细胞定位。如预期的那样,产生截短形式受体的突变体Q43X和S19fsX51没有活性。突变体W174C和A175T的活性非常不同,即使突变是相邻的且位于同一跨膜螺旋(TMH)中。实际上,突变体A175T在质膜(PM)上的产生和表达与野生型(wt)受体相似,并且突变体保留了70%的wt受体活性。相反,在细胞质中W174C突变体的产生与wt受体和突变体A175T相似,但是在PM上几乎检测不到,并且没有活性。共聚焦显微镜显示,W174C仍然被困在细胞的内质网(ER)中。结构分析表明,用TM Cys取代位于TMH4中间且在所有已知MC4Rs中100%保守的Trp174可能会破坏TMH2和TMH4的相对方向,从而影响整体蛋白质结构。此外,共表达研究表明,突变体A175T而不是W174C对wt受体的活性起主要的负面作用。

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