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Sairavi, A.

Publications and source records attributed to Sairavi, A..

2 recordsLinked to original sources

Genomic loss of GPR108 disrupts AAV transduction in birds

The G protein-coupled receptor 108 (GPR108) gene encodes a protein factor identified as critical for adeno-associated virus (AAV) entry into mammalian cells, but whether it is universally involved in AAV transduction is unknown. Remarkably, we have discovered that GPR108 is absent in the genomes of birds and in most other sauropsids, providing a likely explanation for the overall lower AAV transduction efficacy of common AAV serotypes in birds compared to mammals. Importantly, transgenic expression of human GPR108 and manipulation of related glycan binding sites in the viral capsid significantly boost AAV transduction in zebra finch cells. These findings contribute to a more in depth understanding of the mechanisms and evolution of AAV transduction, with potential implications for the design of efficient tools for gene manipulation in experimental animal models, and a range of gene therapy applications in humans.

genomics↗

Enhancing gene transfer to renal tubules and podocytes by context-dependent selection of AAV capsids

Despite recent remarkable advancements in adeno-associated virus (AAV) vector technologies, effective gene delivery to the kidney remains a significant challenge. Here we show that AAV vector transduction in proximal tubules and podocytes, the crucial targets for renal gene therapy, can be enhanced remarkably through a meticulous selection of both AAV capsids and route of administration, tailored to the condition of the kidney. In this study, we performed a side-by-side comparison of 47 AAV capsids using AAV Barcode-Seq and identified six AAV capsids, including AAV-KP1, that exhibit remarkable enhancement of renal transduction in mice when delivered locally via the renal vein or the renal pelvis. Individual capsid validation analyses revealed that local delivery of AAV-KP1, but not AAV9, enables remarkably enhanced proximal tubule transduction while minimizing off-target liver transduction. In a mouse model of chronic kidney disease, intravenous administration of AAV9, not AAV-KP1, showed efficient renal tubule and podocyte transduction, which was not observed in the control wild-type mice. We also provide evidence that these contrasting observations between AAV-KP1 and AAV9 are attributed to their distinct pharmacokinetic profiles. Thus, this study highlights the importance of context-dependent capsid selection and engineering for successful renal gene therapy.

cell biology↗