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白细胞介素-11 受体变异 p.W307R 导致人类颅缝早闭。

The interleukin-11 receptor variant p.W307R results in craniosynostosis in humans.

机构信息

Institute for Cardiogenetics, and University Heart Center, University of Lübeck, Building 67, BMF, Ratzeburger Allee 160, 23562, Lübeck, Germany.

DZHK (German Research Center for Cardiovascular Research), Partner Site Hamburg/Lübeck/Kiel, 23562, Lübeck, Germany.

出版信息

Sci Rep. 2023 Aug 18;13(1):13479. doi: 10.1038/s41598-023-39466-y.

Abstract

Craniosynostosis is characterized by the premature fusion and ossification of one or more of the sutures of the calvaria, often resulting in abnormal features of the face and the skull. In cases in which growth of the brain supersedes available space within the skull, developmental delay or cognitive impairment can occur. A complex interplay of different cell types and multiple signaling pathways are required for correct craniofacial development. In this study, we report on two siblings with craniosynostosis and a homozygous missense pathogenic variant within the IL11RA gene (c.919 T > C; p.W307R). The patients present with craniosynostosis, exophthalmos, delayed tooth eruption, mild platybasia, and a basilar invagination. The p.W307R variant is located within the arginine-tryptophan-zipper within the D3 domain of the IL-11R, a structural element known to be important for the stability of the cytokine receptor. Expression of IL-11R-W307R in cells shows impaired maturation of the IL-11R, no transport to the cell surface and intracellular retention. Accordingly, cells stably expressing IL-11R-W307R do not respond when stimulated with IL-11, arguing for a loss-of-function mutation. In summary, the IL-11R-W307R variant, reported here for the first time to our knowledge, is most likely the causative variant underlying craniosynostosis in these patients.

摘要

颅缝早闭的特征是颅骨的一条或多条缝过早融合和骨化,通常导致面部和颅骨的异常特征。在大脑生长超过颅骨内可用空间的情况下,可能会出现发育迟缓或认知障碍。正确的颅面发育需要不同细胞类型和多种信号通路的复杂相互作用。在这项研究中,我们报告了两例颅缝早闭的同胞,他们的 IL11RA 基因(c.919T>C;p.W307R)存在纯合错义致病性变异。患者表现为颅缝早闭、眼球突出、牙齿萌出延迟、轻度扁平颅底和颅底凹陷。p.W307R 变异位于 IL-11R 的 D3 结构域内的精氨酸-色氨酸-拉链内,该结构元件对于细胞因子受体的稳定性很重要。在细胞中表达 IL-11R-W307R 显示 IL-11R 成熟受损,不能转运到细胞表面并在细胞内滞留。因此,当用 IL-11 刺激稳定表达 IL-11R-W307R 的细胞时,它们不会做出反应,这表明该变异是一种功能丧失突变。总之,我们首次报道的 IL-11R-W307R 变异很可能是这些患者颅缝早闭的致病变异。

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