Dissecting ELANE neutropenia pathogenicity by human HSC gene editing

利用人类造血干细胞基因编辑技术解析ELANE中性粒细胞减少症的致病机制

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作者:Shuquan Rao ,Yao Yao ,Josias Soares de Brito ,Qiuming Yao ,Anne H Shen ,Ruth E Watkinson ,Alyssa L Kennedy ,Steven Coyne ,Chunyan Ren ,Jing Zeng ,Anna Victoria Serbin ,Sabine Studer ,Kaitlyn Ballotti ,Chad E Harris ,Kevin Luk ,Christian S Stevens ,Myriam Armant ,Luca Pinello ,Scot A Wolfe ,Roberto Chiarle ,Akiko Shimamura ,Benhur Lee ,Peter E Newburger ,Daniel E Bauer

Abstract

Severe congenital neutropenia (SCN) is a life-threatening disorder most often caused by dominant mutations of ELANE that interfere with neutrophil maturation. We conducted a pooled CRISPR screen in human hematopoietic stem and progenitor cells (HSPCs) that correlated ELANE mutations with neutrophil maturation potential. Highly efficient gene editing of early exons elicited nonsense-mediated decay (NMD), overcame neutrophil maturation arrest in HSPCs from ELANE-mutant SCN patients, and produced normal hematopoietic engraftment function. Conversely, terminal exon frameshift alleles that mimic SCN-associated mutations escaped NMD, recapitulated neutrophil maturation arrest, and established an animal model of ELANE-mutant SCN. Surprisingly, only -1 frame insertions or deletions (indels) impeded neutrophil maturation, whereas -2 frame late exon indels repressed translation and supported neutrophil maturation. Gene editing of primary HSPCs allowed faithful identification of variant pathogenicity to clarify molecular mechanisms of disease and encourage a universal therapeutic approach to ELANE-mutant neutropenia, returning normal neutrophil production and preserving HSPC function.

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