Natural variations in AAVHSC16 significantly reduce liver tropism and maintain broad distribution to periphery and CNS.

Molecular Therapy. Methods & Clinical Development Pub Date : 2022-06-30 eCollection Date: 2022-09-08 DOI:10.1016/j.omtm.2022.06.013
Laura J Smith, Lindsay A Schulman, Samantha Smith, Laura Van Lieshout, Carmen M Barnes, Liana Behmoiras, Meghan Scarpitti, Monicah Kivaa, Khanh L Duong, Ludo O Benard, Jeff L Ellsworth, Nancy Avila, Deiby Faulkner, April Hayes, Jason Lotterhand, Jose Israel Rivas, Arnold V Sengooba, Alec Tzianabos, Albert B Seymour, Omar L Francone
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引用次数: 2

Abstract

Adeno-associated viruses derived from human hematopoietic stem cells (AAVHSCs) are naturally occurring AAVs. Fifteen AAVHSCs have demonstrated broad biodistribution while displaying differences in transduction. We examine the structure-function relationships of these natural amino acid variations on cellular binding. We demonstrate that AAVHSC16 is the only AAVHSC that does not preferentially bind to terminal galactose. AAVHSC16 contains two unique amino acids, 501I and 706C, compared with other AAVHSCs. Through mutagenesis, we determined that residue 501 contributes to the lack of galactose binding. Structural analysis revealed that residue 501 is in proximity to the galactose binding pocket, hence confirming its functional role in galactose binding. Biodistribution analysis of AAVHSC16 indicated significantly less liver tropism in mice and non-human primates compared with other clade F members, likely associated with overall binding differences observed in vitro. AAVHSC16 maintained robust tropism to other key tissues in the peripheral and central nervous systems after intravenous injection, including to the brain, heart, and gastrocnemius. Importantly, AAVHSC16 did not induce elevated liver enzyme levels in non-human primates after intravenous injection at high doses. The unique glycan binding and tropism of AAVHSC16 makes this naturally occurring capsid an attractive candidate for therapies requiring less liver tropism while maintaining broad biodistribution.

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Abstract Image

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AAVHSC16的自然变异显著降低肝向性,并保持广泛分布于外周和中枢神经系统。
来源于人造血干细胞(aavhsc)的腺相关病毒是自然产生的aav。15种aavhsc表现出广泛的生物分布,但在转导方面表现出差异。我们研究了这些天然氨基酸变异在细胞结合中的结构-功能关系。我们证明AAVHSC16是唯一不优先结合末端半乳糖的AAVHSC。与其他aavhsc相比,AAVHSC16含有501I和706C两个独特的氨基酸。通过诱变,我们确定残基501导致了半乳糖结合缺失。结构分析表明,501残基位于半乳糖结合袋附近,从而证实了其在半乳糖结合中的功能作用。AAVHSC16的生物分布分析表明,与其他F分支成员相比,AAVHSC16在小鼠和非人灵长类动物中的肝嗜性显著降低,这可能与体外观察到的总体结合差异有关。经静脉注射后,AAVHSC16对外周和中枢神经系统的其他关键组织,包括脑、心脏和腓肠肌,保持了强大的趋向性。重要的是,静脉注射高剂量AAVHSC16后,不会引起非人灵长类动物肝酶水平升高。AAVHSC16独特的聚糖结合和趋向性使这种天然存在的衣壳成为一种有吸引力的候选药物,需要较少的肝脏趋向性,同时保持广泛的生物分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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