4.7 Article

Dissecting ELANE neutropenia pathogenicity by human HSC gene editing

期刊

CELL STEM CELL
卷 28, 期 5, 页码 833-+

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CELL PRESS
DOI: 10.1016/j.stem.2020.12.015

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资金

  1. NIDDK [RC2DK122533]
  2. NHLBI [R01HL130733, R01HL150553]
  3. Burroughs Wellcome Fund

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A study used a pooled CRISPR screen to uncover the correlation between ELANE mutations and neutrophil maturation potential, successfully overcoming maturation blockage in patients with congenital neutropenia through gene editing and establishing relevant animal models. Different types of chromosomal variations impact neutrophil maturation, which is crucial for elucidating disease mechanisms and developing universal treatment approaches.
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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