A non-affinity purification process for GMP production of prefusion-closed HIV-1 envelope trimers from clades A and C for clinical evaluation.

dc.contributor.author

Gulla, Krishana

dc.contributor.author

Cibelli, Nicole

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Cooper, Jonathan W

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Fuller, Haley C

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Schneiderman, Zachary

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Witter, Sara

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Zhang, Yaqiu

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Changela, Anita

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Geng, Hui

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Hatcher, Christian

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Narpala, Sandeep

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Tsybovsky, Yaroslav

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Zhang, Baoshan

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Vrc Production Program

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McDermott, Adrian B

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Kwong, Peter D

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Gowetski, Daniel B

dc.date.accessioned

2024-11-19T23:17:11Z

dc.date.available

2024-11-19T23:17:11Z

dc.date.issued

2021-06

dc.description.abstract

Metastable glycosylated immunogens present challenges for GMP manufacturing. The HIV-1 envelope (Env) glycoprotein trimer is covered by N-linked glycan comprising half its mass and requires both trimer assembly and subunit cleavage to fold into a prefusion-closed conformation. This conformation, the vaccine-desired antigenic state, is both metastable to structural rearrangement and labile to subunit dissociation. Prior reported GMP manufacturing for a soluble trimer stabilized in a near-native state by disulfide (SOS) and Ile-to-Pro (IP) mutations has employed affinity methods based on antibody 2G12, which recognizes only ~30% of circulating HIV strains. Here, we develop a scalable manufacturing process based on commercially available, non-affinity resins, and we apply the process to current GMP (cGMP) production of trimers from clades A and C, which have been found to boost cross-clade neutralizing responses in vaccine-test species. The clade A trimer, which we named "BG505 DS-SOSIP.664", contained an engineered disulfide (201C-433C; DS) within gp120, which further stabilized this trimer in a prefusion-closed conformation resistant to CD4-induced triggering. BG505 DS-SOSIP.664 was expressed in a CHO-DG44 stable cell line and purified with initial and final tangential flow filtration steps, three commercially available resin-based chromatography steps, and two orthogonal viral clearance steps. The non-affinity purification enabled efficient scale-up, with a 250 L-scale cGMP run yielding 9.6 g of purified BG505 DS-SOSIP.664. Antigenic analysis indicated retention of a prefusion-closed conformation, including recognition by apex-directed and fusion peptide-directed antibodies. The developed manufacturing process was suitable for 50 L-scale production of a second prefusion-stabilized Env trimer vaccine candidate, ConC-FP8v2 RnS-3mut-2G-SOSIP.664, yielding 7.8 g of this consensus clade C trimer. The successful process development and purification scale-up of HIV-1 Env trimers from different clades by using commercially available materials provide experimental demonstration for cGMP manufacturing of trimeric HIV-Env vaccine immunogens, in an antigenically desired conformation, without the use of costly affinity resins.

dc.identifier

S0264-410X(21)00545-4

dc.identifier.issn

0264-410X

dc.identifier.issn

1873-2518

dc.identifier.uri

https://hdl.handle.net/10161/31662

dc.language

eng

dc.publisher

Elsevier BV

dc.relation.ispartof

Vaccine

dc.relation.isversionof

10.1016/j.vaccine.2021.04.063

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

HIV-1

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AIDS Vaccines

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HIV Antibodies

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HIV Antigens

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env Gene Products, Human Immunodeficiency Virus

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Protein Multimerization

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Antibodies, Neutralizing

dc.title

A non-affinity purification process for GMP production of prefusion-closed HIV-1 envelope trimers from clades A and C for clinical evaluation.

dc.type

Journal article

pubs.begin-page

3379

pubs.end-page

3387

pubs.issue

25

pubs.organisational-group

Duke

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Pratt School of Engineering

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Student

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Biomedical Engineering

pubs.publication-status

Published

pubs.volume

39

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