Multidose transient transfection of human embryonic kidney 293 cells modulates recombinant adeno‐associated virus2/5 Rep protein expression and influences the enrichment fraction of filled capsids

Author:

Srinivasan Prasanna1ORCID,Canova Christopher T.2,Sha Sha3,Nguyen Tam N. T.4,Joseph John1,Sangerman Jose1,Maloney Andrew J.5,Katsikis Georgios6,Ou Rui Wen7,Hong Moo Sun8ORCID,Ng Jaclyn9,Yuan Arella1,Antov Daniel1,Song Sally1,Chen Wenyu1,Neufeld Caleb1,Wolfrum Jacqueline M.1,Barone Paul W.1ORCID,Sinskey Anthony J.7ORCID,Springs Stacy L.1,Braatz Richard D.12ORCID

Affiliation:

1. Center for Biomedical Innovation Massachusetts Institute of Technology Cambridge Massachusetts USA

2. Department of Chemical Engineering Massachusetts Institute of Technology Cambridge Massachusetts USA

3. Ultragenyx Pharmaceutical Inc. Novato Cambridge USA

4. BioNTech SE Cambridge Massachusetts USA

5. Amgen Cambridge Massachusetts USA

6. Anthology Cambridge Massachusetts USA

7. Department of Biology Massachusetts Institute of Technology Cambridge Massachusetts USA

8. School of Chemical and Biological Engineering Seoul National University Seoul Republic of Korea

9. Stanford University School of Medicine Stanford California USA

Abstract

AbstractRecombinant adeno‐associated virus (rAAV) is a commonly used in vivo gene therapy vector because of its nonpathogenicity, long‐term transgene expression, broad tropism, and ability to transduce both dividing and nondividing cells. However, rAAV vector production via transient transfection of mammalian cells typically yields a low fraction of filled‐to‐total capsids (~1%–30% of total capsids produced). Analysis of our previously developed mechanistic model for rAAV2/5 production attributed these low fill fractions to a poorly coordinated timeline between capsid synthesis and viral DNA replication and the repression of later phase capsid formation by Rep proteins. Here, we extend the model by quantifying the expression dynamics of total Rep proteins and their influence on the key steps of rAAV2/5 production using a multiple dosing transfection of human embryonic kidney 293 (HEK293) cells. We report that the availability of preformed empty capsids and viral DNA copies per cell are not limiting to the capsid‐filling reaction. However, optimal expression of Rep proteins (<240 ± 13 ag per cell) enables enrichment of the filled capsid population (>12% of total capsids/cell) upstream. Our analysis suggests increased enrichment of filled capsids via regulating the expression of Rep proteins is possible but at the expense of per cell capsid titer in a triple plasmid transfection. Our study reveals an intrinsic limitation of scaling rAAV2/5 vector genome (vg) production and underscores the need for approaches that allow for regulating the expression of Rep proteins to maximize vg titer per cell upstream.

Publisher

Wiley

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