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DNA结合亲和力和特异性决定了BCL11B相关疾病中的表型多样性。

DNA-binding affinity and specificity determine the phenotypic diversity in BCL11B-related disorders.

作者信息

Lessel Ivana, Baresic Anja, Chinn Ivan K, May Jonathan, Goenka Anu, Chandler Kate E, Posey Jennifer E, Afenjar Alexandra, Averdunk Luisa, Bedeschi Maria Francesca, Besnard Thomas, Brager Rae, Brick Lauren, Brugger Melanie, Brunet Theresa, Byrne Susan, Calle-Martín Oscar de la, Capra Valeria, Cardenas Paul, Chappé Céline, Chong Hey J, Cogne Benjamin, Conboy Erin, Cope Heidi, Courtin Thomas, Deb Wallid, Dilena Robertino, Dubourg Christèle, Elgizouli Magdeldin, Fernandes Erica, Fitzgerald Kristi K, Gangi Silvana, George-Abraham Jaya K, Gucsavas-Calikoglu Muge, Haack Tobias B, Hadonou Medard, Hanker Britta, Hüning Irina, Iascone Maria, Isidor Bertrand, Järvelä Irma, Jin Jay J, Jorge Alexander A L, Josifova Dragana, Kalinauskiene Ruta, Kamsteeg Erik-Jan, Keren Boris, Kessler Elena, Kölbel Heike, Kozenko Mariya, Kubisch Christian, Kuechler Alma, Leal Suzanne M, Leppälä Juha, Luu Sharon M, Lyon Gholson J, Madan-Khetarpal Suneeta, Mancardi Margherita, Marchi Elaine, Mehta Lakshmi, Menendez Beatriz, Morel Chantal F, Harasink Sue Moyer, Nevay Dayna-Lynn, Nigro Vincenzo, Odent Sylvie, Oegema Renske, Pappas John, Pastore Matthew T, Perilla-Young Yezmin, Platzer Konrad, Powell-Hamilton Nina, Rabin Rachel, Rekab Aisha, Rezende Raissa C, Robert Leema, Romano Ferruccio, Scala Marcello, Poths Karin, Schrauwen Isabelle, Sebastian Jessica, Short John, Sidlow Richard, Sullivan Jennifer, Szakszon Katalin, Tan Queenie K G, Wagner Matias, Wieczorek Dagmar, Yuan Bo, Maeding Nicole, Strunk Dirk, Begtrup Amber, Banka Siddharth, Lupski James R, Tolosa Eva, Lessel Davor

机构信息

Institute of Human Genetics, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany; Institute of Human Genetics, University of Regensburg, 93053 Regensburg, Germany.

Division of Computing and Data Science, Ruđer Bošković Institute, 10000 Zagreb, Croatia.

出版信息

Am J Hum Genet. 2025 Feb 6;112(2):394-413. doi: 10.1016/j.ajhg.2024.12.012. Epub 2025 Jan 10.

Abstract

BCL11B is a Cys2-His2 zinc-finger (C2H2-ZnF) domain-containing, DNA-binding, transcription factor with established roles in the development of various organs and tissues, primarily the immune and nervous systems. BCL11B germline variants have been associated with a variety of developmental syndromes. However, genotype-phenotype correlations along with pathophysiologic mechanisms of selected variants mostly remain elusive. To dissect these, we performed genotype-phenotype correlations of 92 affected individuals harboring a pathogenic or likely pathogenic BCL11B variant, followed by immune phenotyping, analysis of chromatin immunoprecipitation DNA-sequencing data, dual-luciferase reporter assays, and molecular modeling. These integrative analyses enabled us to define three clinical subtypes of BCL11B-related disorders. It is likely that gene-disruptive BCL11B variants and missense variants affecting zinc-binding cysteine and histidine residues cause mild to moderate neurodevelopmental delay with increased propensity for behavioral and dental anomalies, allergies and asthma, and reduced type 2 innate lymphoid cells. Missense variants within C2H2-ZnF DNA-contacting α helices cause highly variable clinical presentations ranging from multisystem anomalies with demise in the first years of life to late-onset, hyperkinetic movement disorder with poor fine motor skills. Those not in direct DNA contact cause a milder phenotype through reduced, target-specific transcriptional activity. However, missense variants affecting C2H2-ZnFs, DNA binding, and "specificity residues" impair BCL11B transcriptional activity in a target-specific, dominant-negative manner along with aberrant regulation of alternative DNA targets, resulting in more severe and unpredictable clinical outcomes. Taken together, we suggest that the phenotypic severity and variability is largely dependent on the DNA-binding affinity and specificity of altered BCL11B proteins.

摘要

BCL11B是一种含有Cys2-His2锌指(C2H2-ZnF)结构域的DNA结合转录因子,在各种器官和组织的发育中发挥着既定作用,主要是在免疫和神经系统中。BCL11B种系变异与多种发育综合征有关。然而,所选变异的基因型-表型相关性以及病理生理机制大多仍不清楚。为了剖析这些问题,我们对92名携带致病性或可能致病性BCL11B变异的受影响个体进行了基因型-表型相关性研究,随后进行了免疫表型分析、染色质免疫沉淀DNA测序数据分析、双荧光素酶报告基因检测和分子建模。这些综合分析使我们能够定义BCL11B相关疾病的三种临床亚型。破坏基因的BCL11B变异以及影响锌结合半胱氨酸和组氨酸残基的错义变异可能导致轻度至中度神经发育迟缓,行为和牙齿异常、过敏和哮喘的倾向增加,以及2型先天性淋巴细胞减少。C2H2-ZnF DNA接触α螺旋内的错义变异导致高度可变的临床表现,从生命最初几年死亡的多系统异常到迟发性、精细运动技能差的多动运动障碍。那些不直接与DNA接触的变异通过降低靶标特异性转录活性导致较轻的表型。然而,影响C2H2-ZnF、DNA结合和“特异性残基”的错义变异以靶标特异性、显性负性方式损害BCL11B转录活性,同时对替代DNA靶标进行异常调节,导致更严重和不可预测的临床结果。综上所述,我们认为表型严重程度和变异性很大程度上取决于改变的BCL11B蛋白的DNA结合亲和力和特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6468/11866971/c944ecd531df/fx1.jpg

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