CDKL1 variants affecting ciliary formation predispose to thoracic aortic aneurysm and dissection.

Theresa Nauth,Melanie Philipp,Sina Renner,Martin D Burkhalter,Helke Schüler,Ceren Saygi,Kristian Händler,Bente Siebels,Alice Busch,Thomas Mair,Verena Rickassel,Sophia Deden,Konstantin Hoffer,Jakob Olfe,Thomas S Mir,Yskert von Kodolitsch,Evaldas Girdauskas,Meike Rybczynski,Malte Kriegs,Hannah Voß,Thomas Sauvigny,Malte Spielmann,Malik Alawi,Susanne Krasemann,Christian Kubisch,Till J Demal,Georg Rosenberger
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Abstract

Genetic factors are fundamental in the etiology of thoracic aortic aneurysm and dissection (TAAD), but the genetic cause is detected in only about 30% of cases. To define unreported TAAD-associated sequence variants, exome and gene panel sequencing was performed in 323 patients. We identified heterozygous CDKL1 variants [c.427T>C p.(Cys143Arg), c.617C>T p.(Ser206Leu), and c.404C>T p.(Thr135Met)] in 6 patients from 3 families with TAAD-spectrum disorders. CDKL1 encodes a protein kinase involved in ciliary biology. Amino acid substitutions were predicted to affect CDKL1 catalytic activity or protein binding properties. CDKL1 was expressed in vascular smooth muscle cells in normal and diseased human aortic wall tissue. Cdkl1 knockdown and transient knockout in zebrafish resulted in intersomitic vessel (ISV) malformations and aortic dilation. Co-injection of human CDKL1wildtype, but not CDKL1Cys143Arg and CDKL1Ser206Leu RNA, rescued ISV malformations. All variants affected CDKL1 kinase function and profiling data, and altered protein-protein binding properties, particularily with ciliary transport molecules. Expression of CDKL1 variants in heterologeous cells interfered with cilia formation and length, CDKL1 localization, and p38-MAPK and Vegf signaling. Our data suggest a role of CDKL1 variants in the pathogenesis of TAAD-spectrum disorders. The association between primary cilia dysregulation and TAAD expands our knowledge of the underlying molecular pathophysiology.
影响纤毛形成的CDKL1变异易患胸主动脉瘤和夹层。
遗传因素是胸主动脉瘤和夹层(TAAD)病因的基础,但遗传原因仅在约30%的病例中被检测到。为了确定未报道的taad相关序列变异,对323例患者进行了外显子组和基因面板测序。我们发现了杂合的CDKL1变异[c]。C . 617c . > . T . p.(Ser206Leu)和C . 404c . > . T .(Thr135Met))在3个taad谱系障碍家族6例患者中的临床意义。CDKL1编码一种参与纤毛生物学的蛋白激酶。预测氨基酸取代会影响CDKL1的催化活性或蛋白质结合特性。CDKL1在正常和病变人主动脉壁组织血管平滑肌细胞中表达。斑马鱼Cdkl1基因敲除和短暂敲除可导致ISV畸形和主动脉扩张。共同注射人CDKL1wildtype,而不是CDKL1Cys143Arg和CDKL1Ser206Leu RNA,挽救了ISV畸形。所有的变异都会影响CDKL1激酶的功能和分析数据,并改变蛋白质的结合特性,特别是与纤毛转运分子的结合。异种细胞中CDKL1变体的表达干扰了纤毛的形成和长度、CDKL1的定位以及p38-MAPK和Vegf信号传导。我们的数据表明CDKL1变异在taad谱系障碍发病机制中的作用。原发性纤毛失调和TAAD之间的联系扩展了我们对潜在分子病理生理学的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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