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使用创新筛选系统鉴定靶基因。

Identification of Target Genes Using Innovative Screening Systems.

作者信息

Sugita Keisuke, Kurata Morito

机构信息

Department of Comprehensive Pathology, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo, Tokyo, Japan.

Department of Pathology, The Cancer Institute Hospital, Japanese Foundation for Cancer Research, Tokyo, Japan.

出版信息

Pathol Int. 2025 Jun;75(6):257-266. doi: 10.1111/pin.70019. Epub 2025 May 5.

Abstract

Advances in cancer biology have been achieved by the identification of oncogenes and tumor suppressor genes through the remarkable progression of next-generation sequencing. New techniques, such as single-cell analysis, help uncover cancer progression and heterogeneity. Reverse genetic screenings, including methods like random mutagenesis via retroviruses, transposons, RNA interference, and CRISPR, are useful for exploring gene functions and their roles in cancer. Especially in random mutagenesis, CRISPR screening and its modifications have recently emerged as powerful tools due to their comprehensiveness and simplicity in inducing genetic mutations. Initially, CRISPR screening focused on analyzing biological phenotypes in a cell population. It has since evolved to incorporate advanced techniques, such as combining single-cell and spatial analyses. These developments enable the investigation of cell-cell and spatial interactions, which more closely mimic In Vivo microenvironments, offering deeper insights into complex biological processes. These approaches allow for the identification of essential genes involved in cancer survival, drug resistance, and tumorigenesis. Together, these technologies are advancing cancer research and therapeutic development.

摘要

通过下一代测序技术的显著进展,癌基因和肿瘤抑制基因的鉴定推动了癌症生物学的发展。单细胞分析等新技术有助于揭示癌症进展和异质性。反向遗传筛选,包括通过逆转录病毒、转座子、RNA干扰和CRISPR等方法进行的随机诱变,对于探索基因功能及其在癌症中的作用很有用。特别是在随机诱变方面,CRISPR筛选及其改进方法由于其在诱导基因突变方面的全面性和简便性,最近已成为强大的工具。最初,CRISPR筛选专注于分析细胞群体中的生物学表型。此后,它已发展到纳入先进技术,如结合单细胞和空间分析。这些进展使得能够研究细胞间和空间相互作用,更紧密地模拟体内微环境,从而更深入地了解复杂的生物学过程。这些方法有助于识别参与癌症存活、耐药性和肿瘤发生的必需基因。总之,这些技术正在推动癌症研究和治疗发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6902/12184300/4f7c8da3b8f2/PIN-75-257-g001.jpg

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