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BCL11B 突变与 2 型先天淋巴细胞减少的神经发育障碍患者相关。

BCL11B mutations in patients affected by a neurodevelopmental disorder with reduced type 2 innate lymphoid cells.

机构信息

Institute of Human Genetics, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

Department of Immunology, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

出版信息

Brain. 2018 Aug 1;141(8):2299-2311. doi: 10.1093/brain/awy173.

Abstract

The transcription factor BCL11B is essential for development of the nervous and the immune system, and Bcl11b deficiency results in structural brain defects, reduced learning capacity, and impaired immune cell development in mice. However, the precise role of BCL11B in humans is largely unexplored, except for a single patient with a BCL11B missense mutation, affected by multisystem anomalies and profound immune deficiency. Using massively parallel sequencing we identified 13 patients bearing heterozygous germline alterations in BCL11B. Notably, all of them are affected by global developmental delay with speech impairment and intellectual disability; however, none displayed overt clinical signs of immune deficiency. Six frameshift mutations, two nonsense mutations, one missense mutation, and two chromosomal rearrangements resulting in diminished BCL11B expression, arose de novo. A further frameshift mutation was transmitted from a similarly affected mother. Interestingly, the most severely affected patient harbours a missense mutation within a zinc-finger domain of BCL11B, probably affecting the DNA-binding structural interface, similar to the recently published patient. Furthermore, the most C-terminally located premature termination codon mutation fails to rescue the progenitor cell proliferation defect in hippocampal slice cultures from Bcl11b-deficient mice. Concerning the role of BCL11B in the immune system, extensive immune phenotyping of our patients revealed alterations in the T cell compartment and lack of peripheral type 2 innate lymphoid cells (ILC2s), consistent with the findings described in Bcl11b-deficient mice. Unsupervised analysis of 102 T lymphocyte subpopulations showed that the patients clearly cluster apart from healthy children, further supporting the common aetiology of the disorder. Taken together, we show here that mutations leading either to BCL11B haploinsufficiency or to a truncated BCL11B protein clinically cause a non-syndromic neurodevelopmental delay. In addition, we suggest that missense mutations affecting specific sites within zinc-finger domains might result in distinct and more severe clinical outcomes.

摘要

转录因子 BCL11B 对于神经系统和免疫系统的发育至关重要,Bcl11b 缺陷导致小鼠大脑结构缺陷、学习能力下降和免疫细胞发育受损。然而,除了一名患有 BCL11B 错义突变的单一患者外,BCL11B 在人类中的精确作用在很大程度上仍未被探索,该患者患有多种系统异常和严重免疫缺陷。使用大规模平行测序,我们鉴定出 13 名患者携带 BCL11B 种系杂合性改变。值得注意的是,他们所有人都受到全球发育迟缓、言语障碍和智力残疾的影响;然而,没有人表现出明显的免疫缺陷临床症状。六个移码突变、两个无义突变、一个错义突变和两个导致 BCL11B 表达减少的染色体重排,均为新生突变。另一个移码突变由一个具有相似表型的母亲遗传而来。有趣的是,受影响最严重的患者携带 BCL11B 锌指结构域内的错义突变,可能影响 DNA 结合结构界面,类似于最近发表的患者。此外,最靠近 C 末端的提前终止密码子突变未能挽救 Bcl11b 缺陷小鼠海马切片培养中的祖细胞增殖缺陷。关于 BCL11B 在免疫系统中的作用,我们对患者进行了广泛的免疫表型分析,发现 T 细胞区室发生改变,缺乏外周 2 型固有淋巴细胞(ILC2),与 Bcl11b 缺陷小鼠中描述的发现一致。对 102 个 T 淋巴细胞亚群的无监督分析表明,患者与健康儿童明显聚类分离,进一步支持该疾病的共同发病机制。总之,我们在这里表明,导致 BCL11B 单倍不足或截断 BCL11B 蛋白的突变在临床上导致非综合征性神经发育迟缓。此外,我们认为影响锌指结构域特定部位的错义突变可能导致不同且更严重的临床结局。

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