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37/67千道尔顿层粘连蛋白受体是8型、2型、3型和9型腺相关病毒的受体。

The 37/67-kilodalton laminin receptor is a receptor for adeno-associated virus serotypes 8, 2, 3, and 9.

作者信息

Akache Bassel, Grimm Dirk, Pandey Kusum, Yant Stephen R, Xu Hui, Kay Mark A

机构信息

Stanford University, Department of Pediatrics, 300 Pasteur Drive, Room G305, Stanford, CA 94305-5208, USA.

出版信息

J Virol. 2006 Oct;80(19):9831-6. doi: 10.1128/JVI.00878-06.

Abstract

Adeno-associated virus serotype 8 (AAV8) is currently emerging as a powerful gene transfer vector, owing to its capability to efficiently transduce many different tissues in vivo. While this is believed to be in part due to its ability to uncoat more readily than other AAV serotypes such as AAV2, understanding all the processes behind AAV8 transduction is important for its application and optimal use in human gene therapy. Here, we provide the first report of a cellular receptor for AAV8, the 37/67-kDa laminin receptor (LamR). We document binding of LamR to AAV8 capsid proteins and intact virions in vitro and demonstrate its contribution to AAV8 transduction of cultured cells and mouse liver in vivo. We also show that LamR plays a role in transduction by three other closely related serotypes (AAV2, -3, and -9). Sequence and deletion analysis allowed us to map LamR binding to two protein subdomains predicted to be exposed on the AAV capsid exterior. Use of LamR, which is constitutively expressed in many clinically relevant tissues and is overexpressed in numerous cancers, provides a molecular explanation for AAV8's broad tissue tropism. Along with its robust transduction efficiency, our findings support the continued development of AAV8-based vectors for clinical applications in humans, especially for tumor gene therapy.

摘要

8型腺相关病毒(AAV8)目前正成为一种强大的基因传递载体,这得益于它能够在体内高效转导多种不同组织。虽然人们认为这部分是由于它比其他腺相关病毒血清型(如AAV2)更易于脱壳,但了解AAV8转导背后的所有过程对于其在人类基因治疗中的应用和最佳使用至关重要。在此,我们首次报道了AAV8的一种细胞受体,即37/67 kDa层粘连蛋白受体(LamR)。我们记录了LamR在体外与AAV8衣壳蛋白和完整病毒粒子的结合,并证明了其对培养细胞和小鼠肝脏体内AAV8转导的作用。我们还表明,LamR在其他三种密切相关血清型(AAV2、-3和-9)的转导中也发挥作用。序列和缺失分析使我们能够将LamR结合定位到预测暴露在AAV衣壳外部的两个蛋白质亚结构域。在许多临床相关组织中组成性表达且在众多癌症中过表达的LamR的使用,为AAV8广泛的组织嗜性提供了分子解释。连同其强大的转导效率,我们的发现支持继续开发基于AAV8的载体用于人类临床应用,特别是肿瘤基因治疗。

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