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TIE1 受体酪氨酸激酶的功能丧失突变可导致迟发性原发性淋巴水肿。

Loss-of-function mutations of the TIE1 receptor tyrosine kinase cause late-onset primary lymphedema.

机构信息

Human Molecular Genetics, de Duve Institute, University of Louvain, Brussels, Belgium.

Wihuri Research Institute, Biomedicum Helsinki, Helsinki, Finland.

出版信息

J Clin Invest. 2024 May 30;134(14):e173586. doi: 10.1172/JCI173586.

Abstract

Primary lymphedema (PL), characterized by tissue swelling, fat accumulation, and fibrosis, results from defects in lymphatic vessels or valves caused by mutations in genes involved in development, maturation, and function of the lymphatic vascular system. Pathogenic variants in various genes have been identified in about 30% of PL cases. By screening of a cohort of 755 individuals with PL, we identified two TIE1 (tyrosine kinase with immunoglobulin- and epidermal growth factor-like domains 1) missense variants and one truncating variant, all predicted to be pathogenic by bioinformatic algorithms. The TIE1 receptor, in complex with TIE2, binds angiopoietins to regulate the formation and remodeling of blood and lymphatic vessels. The premature stop codon mutant encoded an inactive truncated extracellular TIE1 fragment with decreased mRNA stability, and the amino acid substitutions led to decreased TIE1 signaling activity. By reproducing the two missense variants in mouse Tie1 via CRISPR/Cas9, we showed that both cause edema and are lethal in homozygous mice. Thus, our results indicate that TIE1 loss-of-function variants can cause lymphatic dysfunction in patients. Together with our earlier demonstration that ANGPT2 loss-of-function mutations can also cause PL, our results emphasize the important role of the ANGPT2/TIE1 pathway in lymphatic function.

摘要

原发性淋巴水肿(PL)的特征是组织肿胀、脂肪堆积和纤维化,是由于涉及淋巴管或瓣膜发育、成熟和功能的基因缺陷引起的。在大约 30%的 PL 病例中已经鉴定出各种基因的致病性变异体。通过对 755 名 PL 患者的队列进行筛选,我们鉴定出了两个 TIE1(含免疫球蛋白和表皮生长因子样结构域的酪氨酸激酶 1)错义变异体和一个截断变异体,所有这些变异体都被生物信息学算法预测为致病性。TIE1 受体与 TIE2 结合,结合血管生成素,以调节血液和淋巴管的形成和重塑。提前终止密码子突变体编码一个无活性的截断细胞外 TIE1 片段,mRNA 稳定性降低,氨基酸取代导致 TIE1 信号活性降低。通过 CRISPR/Cas9 在小鼠 Tie1 中重现这两个错义变异体,我们表明它们都导致水肿,并在纯合子小鼠中是致命的。因此,我们的结果表明 TIE1 功能丧失变异体可导致患者的淋巴管功能障碍。与我们早期证明的 ANGPT2 功能丧失突变也可导致 PL 一起,我们的结果强调了 ANGPT2/TIE1 途径在淋巴管功能中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19d8/11245153/48fbc4b5177f/jci-134-173586-g069.jpg

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