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Comparative Analysis of Host Cell Entry Efficiency and Neutralization Sensitivity of Emerging SARS-CoV-2 Lineages KP.2, KP.2.3, KP.3, and LB.1

Authors :
Nianzhen Chen
Katharina Emma Decker
Sebastian R. Schulz
Amy Kempf
Inga Nehlmeier
Anna-Sophie Moldenhauer
Alexandra Dopfer-Jablonka
Georg M. N. Behrens
Metodi V. Stankov
Luis Manthey
Hans-Martin Jäck
Markus Hoffmann
Stefan Pöhlmann
Prerna Arora
Source :
Vaccines, Vol 12, Iss 11, p 1236 (2024)
Publication Year :
2024
Publisher :
MDPI AG, 2024.

Abstract

New SARS-CoV-2 lineages continue to evolve and may exhibit new characteristics regarding host cell entry efficiency and potential for antibody evasion. Here, employing pseudotyped particles, we compared the host cell entry efficiency, ACE2 receptor usage, and sensitivity to antibody-mediated neutralization of four emerging SARS-CoV-2 lineages, KP.2, KP.2.3, KP.3, and LB.1. The XBB.1.5 and JN.1 lineages served as controls. Our findings reveal that KP.2, KP.2.3, KP.3, and LB.1 lineages enter host cells efficiently and in an ACE2-dependent manner, and that KP.3 is more adept at entering Calu-3 lung cells than JN.1. However, the variants differed in their capacity to employ ACE2 orthologues from animal species for entry, suggesting differences in ACE2 interactions. Moreover, we demonstrate that only two out of seven therapeutic monoclonal antibody (mAbs) in preclinical development retain robust neutralizing activity against the emerging JN.1 sublineages tested, while three mAbs displayed strongly reduced neutralizing activity and two mAbs lacked neutralizing activity against any of the lineages tested. Furthermore, our results show that KP.2, KP.2.3, KP.3, and LB.1 lineages evade neutralization by antibodies induced by infection or vaccination with greater efficiency than JN.1, particularly in individuals without hybrid immunity. This study indicates that KP.2, KP.2.3, KP.3, and LB.1 differ in ACE2 interactions and the efficiency of lung cell entry and suggest that evasion of neutralizing antibodies drove the emergence of these variants.

Details

Language :
English
ISSN :
12111236 and 2076393X
Volume :
12
Issue :
11
Database :
Directory of Open Access Journals
Journal :
Vaccines
Publication Type :
Academic Journal
Accession number :
edsdoj.0c55e3d4b4ff40df90a59f5934cc15f5
Document Type :
article
Full Text :
https://doi.org/10.3390/vaccines12111236