特纳综合征中具有促炎特征的中性粒细胞水平升高。

IF 4.7 2区 医学 Q1 GENETICS & HEREDITY
Jesper Just, Lukas Ochsner Reynaud Ridder, Emma Bruun Johannsen, Jens Magnus Bernth Jensen, Mikkel Steen Petersen, Helene Viborg Christensen, Kenneth Kjærgaard, Jacob Redder, Simon Chang, Kirstine Stochholm, Anne Skakkebæk, Claus Højbjerg Gravholt
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引用次数: 0

摘要

特纳综合征(TS)表现为多种核型,包括45x单体和变异,如同染色体和嵌合体,并以几种合并症为特征,包括代谢状况和自身免疫。在这里,我们研究了一系列核型的基因组景观。我们发现TS有一个共同的常染色体甲基组和转录组,尽管不同的核型变异。所有TS个体都缺少X染色体p臂,而来自q臂的XIST表达不影响常染色体转录组或甲基组,这突出了缺失的p臂及其假常染色体1区的关键作用。此外,我们显示增加的中性粒细胞水平和增加的中性粒细胞活化。中性粒细胞的增加与TS临床特征和X-Y同源基因TBL1X的表达增加有关,这表明遗传基础可能导致TS中中性粒细胞驱动的炎症应激。识别中性粒细胞激活增加的TS个体可能会减缓更严重的代谢问题的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elevated levels of neutrophils with a pro-inflammatory profile in Turner syndrome across karyotypes.

Turner syndrome (TS) presents with multiple karyotypes, including 45,X monosomy and variants such as isochromosomes and mosaicism, and is characterized by several co-morbidities, including metabolic conditions and autoimmunity. Here, we investigated the genomic landscapes across a range of karyotypes. We show that TS have a common autosomal methylome and transcriptome, despite distinct karyotypic variations. All TS individuals lacked the X chromosome p-arm, and XIST expression from the q-arm did not affect the autosomal transcriptome or methylome, highlighting the critical role of the missing p-arm with its pseudoautosomal region 1. Furthermore, we show increased levels of neutrophils and increased neutrophil activation. The increase in neutrophils was linked to TS clinical traits and to increased expression of the X-Y homologous gene TBL1X, suggesting a genetic basis, which may lead to neutrophil-driven inflammatory stress in TS. Identifying TS individuals with increased neutrophil activation could potentially mitigate the progression towards more severe metabolic issues.

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来源期刊
NPJ Genomic Medicine
NPJ Genomic Medicine Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
9.40
自引率
1.90%
发文量
67
审稿时长
17 weeks
期刊介绍: npj Genomic Medicine is an international, peer-reviewed journal dedicated to publishing the most important scientific advances in all aspects of genomics and its application in the practice of medicine. The journal defines genomic medicine as "diagnosis, prognosis, prevention and/or treatment of disease and disorders of the mind and body, using approaches informed or enabled by knowledge of the genome and the molecules it encodes." Relevant and high-impact papers that encompass studies of individuals, families, or populations are considered for publication. An emphasis will include coupling detailed phenotype and genome sequencing information, both enabled by new technologies and informatics, to delineate the underlying aetiology of disease. Clinical recommendations and/or guidelines of how that data should be used in the clinical management of those patients in the study, and others, are also encouraged.
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