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导致人类变异的 GATA2 锌指结构域脱位的病原体可破坏造血基因表达和信号网络。

Pathogenic human variant that dislocates GATA2 zinc fingers disrupts hematopoietic gene expression and signaling networks.

机构信息

Wisconsin Blood Cancer Research Institute, Department of Cell and Regenerative Biology, Carbone Cancer Center, and.

Department of Biostatistics and Biomedical Informatics, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.

出版信息

J Clin Invest. 2023 Apr 3;133(7):e162685. doi: 10.1172/JCI162685.

Abstract

Although certain human genetic variants are conspicuously loss of function, decoding the impact of many variants is challenging. Previously, we described a patient with leukemia predisposition syndrome (GATA2 deficiency) with a germline GATA2 variant that inserts 9 amino acids between the 2 zinc fingers (9aa-Ins). Here, we conducted mechanistic analyses using genomic technologies and a genetic rescue system with Gata2 enhancer-mutant hematopoietic progenitor cells to compare how GATA2 and 9aa-Ins function genome-wide. Despite nuclear localization, 9aa-Ins was severely defective in occupying and remodeling chromatin and regulating transcription. Variation of the inter-zinc finger spacer length revealed that insertions were more deleterious to activation than repression. GATA2 deficiency generated a lineage-diverting gene expression program and a hematopoiesis-disrupting signaling network in progenitors with reduced granulocyte-macrophage colony-stimulating factor (GM-CSF) and elevated IL-6 signaling. As insufficient GM-CSF signaling caused pulmonary alveolar proteinosis and excessive IL-6 signaling promoted bone marrow failure and GATA2 deficiency patient phenotypes, these results provide insight into mechanisms underlying GATA2-linked pathologies.

摘要

虽然某些人类遗传变异明显是功能丧失,但解码许多变异的影响具有挑战性。此前,我们描述了一例具有白血病易感性综合征(GATA2 缺乏)的患者,其种系 GATA2 变异在 2 个锌指之间插入 9 个氨基酸(9aa-Ins)。在这里,我们使用基因组技术和带有 Gata2 增强子突变造血祖细胞的遗传拯救系统进行了机制分析,以比较 GATA2 和 9aa-Ins 如何在全基因组范围内发挥作用。尽管核定位,9aa-Ins 在占据和重塑染色质以及调节转录方面严重缺陷。锌指间隔长度的变化表明,插入对激活的有害性大于抑制。GATA2 缺乏会导致祖细胞中的谱系分化基因表达程序和破坏造血的信号网络,从而减少粒细胞-巨噬细胞集落刺激因子 (GM-CSF) 并增加 IL-6 信号。由于 GM-CSF 信号不足会导致肺泡蛋白沉积症,而 IL-6 信号过度会促进骨髓衰竭和 GATA2 缺乏患者的表型,这些结果为 GATA2 相关病理学的机制提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded0/10065080/13b054f37ad0/jci-133-162685-g120.jpg

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