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鉴定SLC35A1作为多血清型重组腺相关病毒(AAV)载体转导的必需宿主因子。

Identification of SLC35A1 as an essential host factor for the transduction of multi-serotype recombinant adeno-associated virus (AAV) vectors.

作者信息

Zhang Xiujuan, Hao Siyuan, Feng Zehua, Ning Kang, Aksu Kuz Cagla, McFarlin Shane, Richart Donovan, Cheng Fang, Zhang-Chen Ander, McFarlane Richenda, Yan Ziying, Qiu Jianming

机构信息

Department of Microbiology, Molecular Genetics and Immunology, University of Kansas Medical Center, Kansas City, Kansas, USA.

Department of Anatomy and Cell Biology, University of Iowa, Iowa City, Iowa, USA.

出版信息

mBio. 2025 Jan 8;16(1):e0326824. doi: 10.1128/mbio.03268-24. Epub 2024 Nov 27.

Abstract

We conducted a genome-wide CRISPR/Cas9 screen in suspension 293 F cells transduced with rAAV5. The highly selected genes revealed after two rounds of screening included the previously reported , , and , along with a cluster of genes involved in glycan biogenesis, Golgi apparatus localization, and endoplasmic reticulum penetration. In this report, we focused on solute carrier family 35 member A1 (), a Golgi apparatus-localized cytidine 5'-monophosphate-sialic acid (CMP-SIA) transporter. We confirmed that knockout (KO) significantly decreased rAAV5 transduction to a level lower than that observed in or KO cells. Although KO drastically reduced the expression of α2,6-linked SIA on the cell surface, the expression of α2,3-linked SIA, as well as the cell binding and internalization of rAAV5, was only moderately affected. Moreover, KO significantly diminished the transduction of AAV multi-serotypes, including rAAV2 and rAAV3, which do not utilize SIAs for primary attachment. Notably, the SLC35A1 KO markedly increased transduction of rAAV9 and rAAV11, which primarily attach to cells via binding to galactose. Further analyses revealed that KO significantly decreased vector nuclear import. More importantly, although the C-terminal cytoplasmic tail deletion (∆C Tail) mutant of SLC35A1 did not drastically decrease SIA expression, it significantly decreased rAAV transduction, as well as vector nuclear import, suggesting that the C-tail is critical in these processes. Furthermore, the T128A mutant significantly decreased SIA expression but still supported rAAV transduction and nuclear import. These findings highlight the involvement of the CMP-SIA transporter in the intracellular trafficking of rAAV vectors post-internalization.IMPORTANCErAAV is an essential tool for gene delivery in the treatment of genetic disorders; however, the mechanisms of rAAV transduction remain partially understood. GPR108 is vital for the transduction of most rAAV vectors, but not for rAAV5. We aimed to identify host factors that impact AAV5 transduction akin to GPR108. Using a genome-wide CRISPR/Cas9 screen in 293 F cells, we identified SLC35A1, a Golgi apparatus-localized CMP-sialic acid transporter that transports CMP-sialic acid from the cytoplasm into the Golgi apparatus for sialylation, is essential to rAAV transduction. Further studies across various AAV serotypes showed SLC35A1 significantly affects vector nuclear import post-internalization. These results underscore the crucial role of SLC35A1 in intracellular trafficking beyond the initial cell attachment of rAAV.

摘要

我们在用rAAV5转导的悬浮293 F细胞中进行了全基因组CRISPR/Cas9筛选。两轮筛选后高度富集的基因包括先前报道的[基因名称1]、[基因名称2]和[基因名称3],以及一组参与聚糖生物合成、高尔基体定位和内质网穿透的基因。在本报告中,我们重点研究了溶质载体家族35成员A1(SLC35A1),一种定位于高尔基体的胞苷5'-单磷酸-唾液酸(CMP-Sia)转运蛋白。我们证实,SLC35A1基因敲除(KO)显著降低rAAV5转导,使其水平低于在[基因名称1]或[基因名称2]基因敲除细胞中观察到的水平。尽管SLC35A1基因敲除极大地降低了细胞表面α2,6连接的唾液酸(Sia)的表达,但α2,3连接的唾液酸的表达以及rAAV5的细胞结合和内化仅受到中度影响。此外,SLC35A1基因敲除显著降低了包括rAAV2和rAAV3在内的多种AAV血清型的转导,而rAAV2和rAAV3并不利用唾液酸进行初始附着。值得注意的是,SLC35A1基因敲除显著增加了rAAV9和rAAV11的转导,rAAV9和rAAV11主要通过与半乳糖结合附着于细胞。进一步分析表明,SLC35A1基因敲除显著降低载体核输入。更重要的是,尽管SLC35A1的C末端胞质尾缺失(∆C尾)突变体并未大幅降低唾液酸表达,但它显著降低了rAAV转导以及载体核输入,表明C尾在这些过程中至关重要。此外,T128A突变体显著降低唾液酸表达,但仍支持rAAV转导和核输入。这些发现突出了CMP-Sia转运蛋白在rAAV载体内化后细胞内运输中的作用。

重要性

rAAV是治疗遗传疾病中基因递送的重要工具;然而,rAAV转导的机制仍部分未明。GPR108对大多数rAAV载体的转导至关重要,但对rAAV5并非如此。我们旨在鉴定类似于GPR108影响AAV5转导的宿主因子。通过在293 F细胞中进行全基因组CRISPR/Cas9筛选,我们鉴定出SLC35A1,一种定位于高尔基体的CMP-唾液酸转运蛋白,其将CMP-唾液酸从细胞质转运到高尔基体进行唾液酸化,对rAAV转导至关重要。对各种AAV血清型的进一步研究表明,SLC35A1显著影响内化后载体的核输入。这些结果强调了SLC35A1在rAAV初始细胞附着之外的细胞内运输中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30da/11708056/ad9a8fba1d98/mbio.03268-24.f001.jpg

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