Khabou Hanen, Desrosiers Mélissa, Winckler Céline, Fouquet Stéphane, Auregan Gwenaëlle, Bemelmans Alexis-Pierre, Sahel José-Alain, Dalkara Deniz
Sorbonne Universités, UPMC Univ Paris 06, INSERM, CNRS, Institut de la Vision, 17 rue Moreau, Paris 75012, France.
Commissariat à l'Energie Atomique et aux Energies Alternatives (CEA), Département des Sciences du Vivant (DSV), Institut d'Imagerie Biomédicale (I2BM), Molecular Imaging Research Center (MIRCen), F-92260 Fontenay-aux-Roses, France.
Biotechnol Bioeng. 2016 Dec;113(12):2712-2724. doi: 10.1002/bit.26031. Epub 2016 Jun 30.
Recently, we described a modified AAV2 vector-AAV2-7m8-having a capsid-displayed peptide insertion of 10 amino acids with enhanced retinal transduction properties. The insertion of the peptide referred to as 7m8 is responsible for high-level gene delivery into deep layers of the retina when virus is delivered into the eye's vitreous. Here, we further characterize AAV2-7m8 mediated gene delivery to neural tissue and investigate the mechanisms by which the inserted peptide provides better transduction away from the injection site. First, in order to understand if the peptide exerts its effect on its own or in conjunction with the neighboring amino acids, we inserted the 7m8 peptide at equivalent positions on three other AAV capsids, AAV5, AAV8, and AAV9, and evaluated its effect on their infectivity. Intravitreal delivery of these peptide insertion vectors revealed that only AAV9 benefited from 7m8 insertion in the context of the retina. We then investigated AAV2-7m8 and AAV9-7m8 properties in the brain, to better evaluate the spread and efficacy of viral transduction in view of the peptide insertion. While 7m8 insertion led to higher intensity gene expression, the spread of gene expression remained unchanged compared to the parental serotypes. Our results indicate that the 7m8 peptide insertion acts by increasing efficacy of cellular entry, with little effect on the spread of viral particles in neural tissue. The effects of peptide insertion are capsid and tissue dependent, highlighting the importance of the microenvironment in gene delivery using AAV. Biotechnol. Bioeng. 2016;113: 2712-2724. © 2016 Wiley Periodicals, Inc.
最近,我们描述了一种经过修饰的腺相关病毒2型载体(AAV2-7m8),其衣壳展示了一个10个氨基酸的肽插入序列,具有增强的视网膜转导特性。当病毒注入眼玻璃体时,被称为7m8的肽插入序列负责将基因高效递送至视网膜深层。在此,我们进一步表征了AAV2-7m8介导的向神经组织的基因递送,并研究了插入肽在远离注射部位时实现更好转导的机制。首先,为了了解该肽是单独发挥作用还是与相邻氨基酸协同作用,我们将7m8肽插入到另外三种腺相关病毒衣壳(AAV5、AAV8和AAV9)的等效位置,并评估其对它们感染性的影响。这些肽插入载体的玻璃体内递送显示,在视网膜的背景下,只有AAV9从7m8插入中受益。然后,我们研究了AAV2-7m8和AAV9-7m8在大脑中的特性,以便根据肽插入情况更好地评估病毒转导的扩散和效果。虽然7m8插入导致更高强度的基因表达,但与亲本血清型相比,基因表达的扩散保持不变。我们的结果表明,7m8肽插入通过提高细胞进入效率起作用,对病毒颗粒在神经组织中的扩散影响很小。肽插入的效果取决于衣壳和组织,突出了在使用腺相关病毒进行基因递送时微环境的重要性。《生物技术与生物工程》2016年;113:2712 - 2724。©2016威利期刊公司