Center for Fetal Medicine, Affiliated Women and Children's Hospital of Jiaxing University, Jiaxing, China.
Department of Critical Care Medicine, First Affiliated Hospital of Nanchang University, Nanchang, China.
Clin Genet. 2024 Nov;106(5):638-643. doi: 10.1111/cge.14588. Epub 2024 Jul 14.
Intellectual disability (ID) is a kind of nervous developmental disorder and affects more than 1% of people worldwide. SLC45A1 as a transmembrane protein is implicated in the regulation of glucose homoeostasis. Through trio-based exome sequencing, the missense mutations of SLC45A1 c.103G>A (p.V35M) and c.1211T>G (p.F404C) were identified in the proband with syndromic ID. The distribution, expression and activity of SLC45A1 wild-type (WT) and variants were assayed in transfected COS7 cells. In SLC45A1 variants, the hydrogen bonds surrounding the 35th and 404th amino acid were changed, location on the cytomembrane was failed, their activity to transport glucose was also significantly decreased to contrast with SLC45A1-WT. No difference was observed at the mRNA and protein level. In conclusion, the compound heterozygous variants of SLC45A1 might be the genetic etiology for syndromic ID. These novel mutations probably attenuated its activity to transport glucose by the alteration of tertiary structure and failure of intracellular location.
智力障碍(ID)是一种神经发育障碍,影响全球超过 1%的人。SLC45A1 作为一种跨膜蛋白,参与葡萄糖稳态的调节。通过基于三人体外显子组测序,在有综合征性 ID 的先证者中鉴定出 SLC45A1 c.103G>A(p.V35M)和 c.1211T>G(p.F404C)错义突变。在转染的 COS7 细胞中检测 SLC45A1 野生型(WT)和变体的分布、表达和活性。在 SLC45A1 变体中,围绕第 35 位和第 404 位氨基酸的氢键发生改变,位于细胞质膜上的位置失败,其运输葡萄糖的活性也显著降低,与 SLC45A1-WT 相比。在 mRNA 和蛋白质水平上没有差异。总之,SLC45A1 的复合杂合变体可能是综合征性 ID 的遗传病因。这些新的突变可能通过改变三级结构和细胞内定位削弱其运输葡萄糖的活性。