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/Phi作为用于[具体对象]基因操作的新型显性选择系统的开发。 (注:原文中“in.”后面缺少具体内容)

Development of /Phi as a new dominant selection system for genetic manipulation in .

作者信息

Khongthongdam Muthita, Phetruen Tanaporn, Chanarat Sittinan

机构信息

Laboratory of Molecular Cell Biology, Department of Biochemistry and Center for Excellence in Protein and Enzyme Technology, Faculty of Science, Mahidol University, Bangkok, Thailand.

Laboratory of Medical Molecular Mycology, Department of Biochemistry, Faculty of Science, Mahidol University, Bangkok, Thailand.

出版信息

Microbiol Spectr. 2025 Jan 7;13(1):e0161824. doi: 10.1128/spectrum.01618-24. Epub 2024 Nov 20.

Abstract

is a globally distributed pathogenic fungus posing a significant threat to immunocompromised individuals, particularly those with HIV/AIDS. Effective genetic manipulation tools are essential for understanding its biology and developing new therapies. However, current genetic tools, including the variation of versatile selectable markers, are limited. This study develops and validates the phosphite dehydrogenase gene ()/phosphite (Phi) selection system as a non-antibiotic selectable marker for genetic manipulation in . A codon-optimized gene from was cloned under the promoter. Using the transient CRISPR-Cas9 coupled with electroporation system, we integrated the gene into the genome and assessed the impact of integration on cell growth and virulence factors. The /Phi system effectively selected transformed cells on Phi-containing media. Growth assays showed that integration did not adversely affect cell growth or key virulence factors, including pleomorphism, capsule size, and melanin production. Additionally, we successfully disrupted the gene using this system, confirming its applicability for gene deletion. Taken together, the /Phi system provides a robust and versatile tool for genetic manipulation in , facilitating further research into its biology and pathogenicity.IMPORTANCE is a type of fungus that can cause serious illnesses in people who have weakened immune systems, like those with HIV/AIDS. To better study this fungus and find new treatments, scientists need tools to change its genes in precise ways. However, the current tools available for this are somewhat limited. This research introduces a new tool called the phosphite dehydrogenase gene/phosphite system, which does not rely on antibiotics to work. It uses a gene from a different bacterium that helps select and grow only the fungus cells that have successfully incorporated new genetic information. This is particularly useful because it does not interfere with the normal growth of the fungus or the features that make it harmful (like its ability to change shape or produce protective coatings). By making it easier and more effective to manipulate the genetics of , this tool opens up new possibilities for understanding how this fungus operates and for developing therapies to combat its infections. This is crucial for improving the treatment of infections in vulnerable populations.

摘要

是一种全球分布的致病真菌,对免疫功能低下的个体,尤其是艾滋病毒/艾滋病患者构成重大威胁。有效的基因操作工具对于理解其生物学特性和开发新疗法至关重要。然而,目前的基因工具,包括通用选择标记的变体,都存在局限性。本研究开发并验证了亚磷酸脱氢酶基因()/亚磷酸(Phi)选择系统,作为一种用于基因操作的非抗生素选择标记。从克隆的密码子优化的基因在启动子下进行克隆。使用瞬时CRISPR-Cas9与电穿孔系统相结合,我们将基因整合到基因组中,并评估整合对细胞生长和毒力因子的影响。/Phi系统在含Phi的培养基上有效地选择了转化细胞。生长试验表明,整合不会对细胞生长或关键毒力因子产生不利影响,包括多形性、荚膜大小和黑色素产生。此外,我们使用该系统成功破坏了基因,证实了其在基因缺失方面的适用性。综上所述,/Phi系统为基因操作提供了一种强大且通用的工具,有助于进一步研究其生物学特性和致病性。重要性是一种真菌,可导致免疫系统较弱的人,如艾滋病毒/艾滋病患者患上严重疾病。为了更好地研究这种真菌并找到新的治疗方法,科学家需要能够精确改变其基因的工具。然而,目前可用的工具在这方面有些有限。本研究引入了一种名为亚磷酸脱氢酶基因/亚磷酸系统的新工具,该工具不依赖抗生素发挥作用。它使用来自另一种细菌的基因,该基因有助于仅选择和培养成功整合了新遗传信息的真菌细胞。这特别有用,因为它不会干扰真菌的正常生长或使其有害的特征(如其变形能力或产生保护涂层的能力)。通过使基因操作更加容易和有效,该工具为理解这种真菌的运作方式以及开发对抗其感染疗法开辟了新的可能性。这对于改善弱势群体感染的治疗至关重要。

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