PO.ET01.05 · 实验与分子治疗

使用 CRISPR-Cas12a2 实现可编程的 RNA 触发的癌细胞清除

Programmable RNA-triggered cancer cell elimination using CRISPR-Cas12a2

海报缩略图:使用 CRISPR-Cas12a2 实现可编程的 RNA 触发的癌细胞清除
编号 7157 展板 14 时间 4/22 09:00–12:00 区域 Section 15 主讲 Jared Thompson, BS
分会场 Overcoming Microenvironmental and Delivery Barriers in Cancer Therapy
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作者与单位 Authors & Affiliations

Jared Thompson1, Paul Scholz2, Kadin Crosby3, Nathan Krah4, Grant Schlauderaff1, Alivia Jolley1, Emily Wilson5, Xiaoyang Zhang5, Ryan Jackson3, Chase Beisel6, Yang Liu1

1Department of Biochemistry, University of Utah School of Medicine, Salt Lake City, UT,2Akribion Therapeutics GmbH, Zwingenberg, Germany,3Department of Chemistry and Biochemistry, Utah State University, Logan, UT,4Department of Internal Medicine, University of Utah, Salt Lake City, UT,5Department of Oncological Sciences, Huntsman Cancer Institute, Salt Lake City, UT,6Helmholtz Institute for RNA-based Infection Research (HIRI), Helmholtz Centre for Infection Research (HZI), Wurzburg, Germany

摘要 Abstract

中文摘要
在不损害健康组织的情况下选择性清除癌症对于精准肿瘤学至关重要。尽管化疗或电离辐射等传统干预措施广泛适用于多种癌症类型,但它们往往表现出脱靶细胞毒性;相反,靶向小分子和生物制剂通过结合蛋白突变提高了特异性,但可能不具有那么广泛的适用性。因此,开发一种兼具高特异性和广泛适用性的治疗方法,仍然是现代癌症治疗中的一大挑战。在此,我们展示了 Cas12a2 这一最近发现的、表现出 RNA 触发 DNA 切碎作用的 CRISPR 核酸酶,能够实现对表达目标转录本的哺乳动物细胞进行可编程的序列特异性清除。用 NLS 标记的 Cas12a2 电穿孔的表达目标的培养物在五天内发生大规模细胞死亡。激活 Cas12a2 会引发细胞核中广泛的双链 DNA 断裂,导致有丝分裂灾难、细胞炎症和凋亡。我们证明 Cas12a2 能够在异质培养物中区分不同的 RNA 靶标,并在无可观察的脱靶活性的情况下诱导细胞死亡。利用这种方法,我们清除了携带常见致癌 KRAS (G12C) 点突变的 NCI-H23 癌细胞,包括对 FDA 批准的 KRAS (G12C) 抑制剂 Sotorasib 耐药的细胞。综上所述,这些发现将 Cas12a2 确立为一个用于个性化癌症治疗的特异性且广泛适用的治疗平台。这些发现进一步为在基础研究和应用研究各学科中将 Cas12a2 用作强效细胞消融工具奠定了基础。
查看英文原文 English abstract
Selective eradication of cancer without harming healthy tissue is vital to precision oncology. Although traditional interventions such as chemotherapy or ionizing radiation are broadly applicable across many cancer types, they often exhibit off-target cytotoxicity; conversely, targeted small molecules and biologics improve specificity by binding to protein mutations, yet may not be as broadly applicable. Developing a therapeutic approach with both high specificity and broad applicability thus remains a major challenge in modern cancer care. Here, we show that Cas12a2, a recently discovered CRISPR nuclease exhibiting RNA-triggered DNA shredding, enables programmable sequence-specific elimination of mammalian cells expressing a target transcript. Target-expressing cultures electroporated with NLS-tagged Cas12a2 undergo massive cell death within five days. Activating Cas12a2 elicits widespread double-strand DNA breaks in the nucleus, leading to mitotic catastrophe, cellular inflammation, and apoptosis. We demonstrate that Cas12a2 distinguishes different RNA targets within heterogeneous cultures and induces cell death without observable off-target activity. Leveraging this approach, we eliminate NCI-H23 cancer cells harboring the prevalent oncogenic KRAS (G12C) point mutation, including cells with resistance to the FDA-approved KRAS (G12C) inhibitor Sotorasib. Taken together, these findings present Cas12a2 as a specific and broadly applicable therapeutic platform for personalized cancer treatment. These findings further establish the basis for use of Cas12a2 as a potent cell ablation tool across disciplines of basic and applied research.
利益披露 Disclosure
J. Thompson, None.. P. Scholz, None.. K. Crosby, None.. N. Krah, None.. G. Schlauderaff, None.. A. Jolley, None.. E. Wilson, None.. X. Zhang, None.. R. Jackson, None.. C. Beisel, None.. Y. Liu, None.

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