Suppr超能文献

POPDC2基因的双等位基因变异导致一种常染色体隐性综合征,表现为心脏传导缺陷和肥厚型心肌病。

Bi-allelic variants in POPDC2 cause an autosomal recessive syndrome presenting with cardiac conduction defects and hypertrophic cardiomyopathy.

作者信息

Nicastro Michele, Vermeer Alexa M C, Postema Pieter G, Tadros Rafik, Bowling Forrest Z, Aegisdottir Hildur M, Tragante Vinicius, Mach Lukas, Postma Alex V, Lodder Elisabeth M, van Duijvenboden Karel, Zwart Rob, Beekman Leander, Wu Lingshuang, Jurgens Sean J, van der Zwaag Paul A, Alders Mariëlle, Allouba Mona, Aguib Yasmine, Santome J Luis, de Una David, Monserrat Lorenzo, Miranda Antonio M A, Kanemaru Kazumasa, Cranley James, van Zeggeren Ingeborg E, Aronica Eleonora M A, Ripolone Michela, Zanotti Simona, Sveinbjornsson Gardar, Ivarsdottir Erna V, Hólm Hilma, Guðbjartsson Daníel F, Skúladóttir Ástrós Th, Stefánsson Kári, Nadauld Lincoln, Knowlton Kirk U, Ostrowski Sisse Rye, Sørensen Erik, Vesterager Pedersen Ole Birger, Ghouse Jonas, Rand Søren A, Bundgaard Henning, Ullum Henrik, Erikstrup Christian, Aagaard Bitten, Bruun Mie Topholm, Christiansen Mette, Jensen Henrik K, Carere Deanna Alexis, Cummings Christopher T, Fishler Kristen, Tørring Pernille Mathiesen, Brusgaard Klaus, Juul Trine Maxel, Saaby Lotte, Winkel Bo Gregers, Mogensen Jens, Fortunato Francesco, Comi Giacomo Pietro, Ronchi Dario, van Tintelen J Peter, Noseda Michela, Airola Michael V, Christiaans Imke, Wilde Arthur A M, Wilders Ronald, Clur Sally-Ann, Verkerk Arie O, Bezzina Connie R, Lahrouchi Najim

机构信息

Amsterdam UMC, University of Amsterdam, Heart Center, Department of Clinical and Experimental Cardiology, Amsterdam Cardiovascular Sciences, Amsterdam, the Netherlands; European Reference Network for Rare, Low Prevalence Complex Diseases of the Heart: ERN GUARD-Heart.

European Reference Network for Rare, Low Prevalence Complex Diseases of the Heart: ERN GUARD-Heart; Department of Human Genetics, Amsterdam UMC, University of Amsterdam, Amsterdam, the Netherlands.

出版信息

Am J Hum Genet. 2025 Jul 3;112(7):1681-1698. doi: 10.1016/j.ajhg.2025.04.016. Epub 2025 May 22.

Abstract

POPDC2 encodes the Popeye domain-containing protein 2, which has an important role in cardiac pacemaking and conduction, due in part to its cyclic AMP (cAMP)-dependent binding and regulation of TREK-1 potassium channels. Loss of Popdc2 in mice results in sinus pauses and bradycardia, and morpholino-mediated knockdown of popdc2 in zebrafish results in atrioventricular (AV) block. We identified bi-allelic variants in POPDC2 in four families with a phenotypic spectrum consisting of sinus node dysfunction, AV conduction defects, and hypertrophic cardiomyopathy. Using homology modeling, we show that the identified variants are predicted to diminish the ability of POPDC2 to bind cAMP. In in vitro electrophysiological studies, we demonstrated that, in contrast with wild-type POPDC2, variants found in affected individuals failed to increase TREK-1 current density. While muscle biopsy of an affected individual did not show clear myopathic disease, it showed significantly reduced abundance of both POPDC1 and POPDC2, suggesting that stability and/or membrane trafficking of the POPDC1-POPDC2 complex is impaired by pathogenic variants in either protein. Single-cell RNA sequencing from human hearts demonstrated that co-expression of POPDC1 and POPDC2 was most prevalent in AV node, AV node pacemaker, and AV bundle cells. Using population-level genetic data of more than 1 million individuals, we show that none of the familial variants were associated with clinical outcomes in heterozygous state, suggesting that heterozygous family members are unlikely to develop clinical manifestations and therefore might not necessitate clinical follow-up. Our findings provide evidence for bi-allelic variants in POPDC2 causing a Mendelian autosomal recessive cardiac syndrome.

摘要

POPDC2编码含Popeye结构域的蛋白2,该蛋白在心脏起搏和传导中起重要作用,部分原因是其对TREK - 1钾通道具有环磷酸腺苷(cAMP)依赖性结合和调节作用。小鼠中Popdc2缺失会导致窦性停搏和心动过缓,而在斑马鱼中通过吗啉代介导敲低popdc2会导致房室(AV)传导阻滞。我们在四个家族中鉴定出POPDC2的双等位基因变异,其表型谱包括窦房结功能障碍、房室传导缺陷和肥厚型心肌病。通过同源建模,我们表明所鉴定的变异预计会降低POPDC2结合cAMP的能力。在体外电生理研究中,我们证明,与野生型POPDC2相比,在受影响个体中发现的变异未能增加TREK - 1电流密度。虽然对一名受影响个体的肌肉活检未显示明显的肌病,但显示POPDC1和POPDC2的丰度均显著降低,这表明POPDC1 - POPDC2复合物的稳定性和/或膜转运受到任一蛋白质中致病变异的损害。对人类心脏进行的单细胞RNA测序表明,POPDC1和POPDC2的共表达在房室结、房室结起搏器和房室束细胞中最为普遍。利用超过100万个体的群体水平遗传数据,我们表明家族性变异在杂合状态下均与临床结局无关,这表明杂合家族成员不太可能出现临床表现,因此可能无需临床随访。我们的研究结果为POPDC2中的双等位基因变异导致孟德尔常染色体隐性心脏综合征提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c92/12256823/cf7f7be7d321/fx1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验