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Assessment of pathogenicity of natural IGFALS gene variants by in silico bioinformatics tools and in vitro functional studies

机译:通过计算机生物信息学工具和体外功能研究评估天然IGFALS基因变异的致病性

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摘要

Acid-labile subunit (ALS) is essential for stabilization of IGF-I and IGFBP-3 in ternary complexes within the vascular system. ALS deficient (ALS-D) patients and a subset of children with idiopathic short stature (ISS), presenting IGFALS gene variants, show variable degree of growth retardation associated to IGF-I and IGFBP-3 deficiencies. The aim of this study was to evaluate the potential pathogenicity of eleven IGFALS variants identified in ALS-D and ISS children using in silico and in vitro approaches. We were able to classify seven of these variants as pathogenic since they present impaired synthesis (p.G1u35Lysfs*87, p.Glu35Glyfs*17, p.Asn276Ser, p.Leu409Phe, p.Ser490Trp and p.Cys540Arg), or partial impairment of synthesis and lack of secretion (p.Leu213Phe). We also observed significant reduction of secreted protein for variants p.Ala330Asp, Ala475Val and p.Arg548Trp, while still retaining their ability to form ternary complexes. These findings provide an approach to test the pathogenicity of IGFALS gene variants. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:酸不稳定亚基(ALS)对于稳定血管系统内三元复合物中的IGF-1和IGFBP-3是必不可少的。呈现IGFALS基因变异的ALS缺陷(ALS-D)患者和特发性矮小儿童(ISS)患儿的子集显示出与IGF-1和IGFBP-3缺陷相关的生长迟缓程度。这项研究的目的是评估使用计算机和体外方法在ALS-D和ISS儿童中鉴定出的11种IGFALS变体的潜在致病性。由于这些变体的合成受损(p.G1u35Lysfs * 87,p.Glu35Glyfs * 17,p.Asn276Ser,p.Leu409Phe,p.Ser490Trp和p.Cys540Arg),或它们的部分受损,因此我们能够将其归类为致病性合成和缺乏分泌(p.Leu213Phe)。我们还观察到变体p.Ala330Asp,Ala475Val和p.Arg548Trp的分泌蛋白显着减少,同时仍保留了它们形成三元复合物的能力。这些发现提供了测试IGFALS基因变体的致病性的方法。 (C)2016 Elsevier Ireland Ltd.保留所有权利。

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