PO.IM02.02 · 免疫学

病毒样颗粒实现原代人髓系细胞中的靶向基因工程和混合CRISPR筛选

Virus like particles enable targeted gene engineering and pooled CRISPR screening in primary human myeloid cells

海报缩略图:病毒样颗粒实现原代人髓系细胞中的靶向基因工程和混合CRISPR筛选
编号 1580 展板 1 时间 4/20 09:00–12:00 区域 Section 9 主讲 Hyuncheol Jung, PhD
分会场 Innate Immunity in Cancer
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作者与单位 Authors & Affiliations

Hyuncheol Jung1, Pascal Devant1, Carter Ching1, Minetoa Ota1, Jennifer Hamilton2, Zachary Steinhart1, Wayne Ngo1, Luis Sandoval1, Jae Hyung Jung1, Da Xu3, Merui An4, Esha Urs1, Peixin Amy Chen1, Vincent Allain1, Takuya Tada5, James K. Nuñez3, Nathaniel R. Landau5, David R. Liu4, Justin Eyquem1, Jennifer A. Doudna1, Alexander Marson1, Julia Carnevale1

1Genomic Immunology, Gladstone-UCSF Institute, San Francisco, CA,2Azalea Therapeutics, San Francisco, CA,3Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, CA,4Merkin Institute of Transformative Technologies in Healthcare, Broad Institute of MIT and Harvard, Cambridge, MA,5Department of Microbiology, NYU Grossman School of Medicine, New York, NY

摘要 Abstract

中文摘要
原代人髓系细胞是免疫治疗的有前景候选者,然而在这些细胞中进行基因工程和筛选的高效、可扩展技术仍然有限。在此,我们提出一个基于病毒样颗粒(VLP)的工具箱,能够将多种CRISPR基因组编辑模式高效递送至人单核细胞、巨噬细胞和树突状细胞,同时保持细胞活力和固有免疫应答性。VLP介导的核糖核蛋白载荷递送支持基因敲除、碱基编辑和表观遗传沉默,并在与用于同源定向修复的AAV供体结合时,能够实现大DNA序列的位点特异性整合。利用通过VPX慢病毒递送sgRNA与通过工程化病毒样颗粒(eVLP)处理递送Cas9蛋白相结合(SLICeVLP),我们在人巨噬细胞中开展了首个混合功能丧失筛选。我们发现了人巨噬细胞中TNF产生和CD80表达的调节因子,其汇聚于TNFAIP3这一炎症极化的核心调节因子。TNFAIP3的消除促进了一种对抑制性极化具有抵抗力的促炎细胞状态,并增强了工程化HER2 CAR-巨噬细胞的细胞毒性。总之,该技术平台能够在原代人髓系细胞中对功能性基因靶点进行无偏倚的发现和表征。
查看英文原文 English abstract
Primary human myeloid cells are promising candidates for immunotherapy, yet efficient and scalable technologies for genetic engineering and screening in these cells are limited. Here we present a virus-like particle (VLP)-based toolkit that delivers diverse CRISPR genome editing modalities to human monocytes, macrophages, and dendritic cells with high efficiency while preserving viability and innate immune responsiveness. VLP-mediated delivery of ribonucleoprotein payloads supports gene knockout, base editing and epigenetic silencing, and enables site-specific integration of large DNA sequences when combined with AAV donors for homology-directed repair. Leveraging sgRNA delivery via VPX-lentivirus combined with Cas9 protein delivery via engineered virus-like particle (eVLP) treatment (SLICeVLP), we performed the first pooled loss-of-function screens in human macrophages. We uncovered regulators of TNF production and CD80 expression in human macrophages, converging on TNFAIP3 as a central regulator of inflammatory polarization. TNFAIP3 ablation promoted a pro-inflammatory cell state that is resistant to suppressive polarization, and augmented cytotoxicity of engineered HER2 CAR-macrophages. Taken together, this technology platform enables unbiased discovery and characterization of functional gene targets in primary human myeloid cells.
利益披露 Disclosure
H. Jung, None.. P. Devant, None.. C. Ching, None.. M. Ota, None.. J. Hamilton, None.. Z. Steinhart, None.. W. Ngo, None.. L. Sandoval, None.. J. Jung, None.. D. Xu, None.. M. An, None.. E. Urs, None.. P. A. Chen, None.. V. Allain, None.. T. Tada, None.. J. K. Nuñez, None.. N. R. Landau, None.. D. R. Liu, None.. J. Eyquem, None.. J. A. Doudna, None.. A. Marson, None.. J. Carnevale, None.

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