Structural integrity of antigen receptors 2259926

J Jessica Chen (1The University of Texas MD Anderson Cancer Center, Department of Lymphoma & Myeloma, Houston, United States) A Abdulrahman Adam (Brigham and Women’s Hospital) R Rahaman Ahmed (Brigham and Women’s Hospital) Z Zahra Allahyari (Brigham and Women’s Hospital) N Natalie Caputo (Harvard Medical School) J John Dingus (Brigham and Women’s Hospital) N Nicholas Garcia (Brigham and Women’s Hospital) A Avneesh Gautam (Brigham and Women’s Hospital) J Joyce Hwang (Brigham and Women’s Hospital) M Meydan Kronrod (Brigham and Women’s Hospital) S Sachin Kumar S Shahab Saghaei (Brigham and Women’s Hospital) F Fang Tian P Pei Tong M Meghan Travers (Brigham and Women’s Hospital) D Duane Wesemann (Brigham and Women’s Hospital) A Adam Zuiani (Brigham and Women’s Hospital)

Abstract

Abstract Introduction Antibodies play a pivotal role in the adaptive immune system due to their ability to bind pathogens and toxins. There are two functionally similar, but structurally diverse antibodies that have arisen throughout evolution. Immunoglobulin (Ig)-based antibodies are found in jawed vertebrates, like humans; and variable lymphocyte receptors (VLRs), which are leucine rich repeats (LRRs)-based antibodies found in jawless vertebrates, like lampreys. While a broad baseline diversity is generated in both Ig-based and LRR-based antibodies, an additional form of antibody diversification—somatic hypermutation (SHM)--is unique to Ig-based antibodies. To date, there has been no solid evidence of SHM in lamprey LRR-based antibodies despite having genes that possess the enzymatic machinery to do so. This opens doors to evaluate possible differences in the negative structural impact somatic mutations would have on Ig- and LRR-based antibodies. Methods We will test this hypothesis by determining the SHM-like mutational tolerance of Ig-based and LRR-based antigen receptors in vitro, and defining diversity and maturation of Ig and VLR substrates in vivo. Results Preliminary computational data suggest that the diverse structures of Ig- and LRR-based antibodies vary in their capacity to maintain structural integrity during hypermutation, a process crucial for the expression of antibody diversity. Conclusion These results are consistent with a hypothesis that structural stability constraints may play a role in real-time protein mutability potential and that Ig-based antibodies are able to express greater real-time diversity than LRR-based antibodies. This will deliver biophysical insights into the aptitude of evolutionarily distinct but functionally convergent adaptive immune receptors for mutation-driven diversification. Funding Source National Science Foundation Graduate Research Fellowship Program (NSF GRFP) DGE 2140743, Ruth L. Kirschstein Predoctoral Individual National Research Service Award (NIH F31) 1F31AI186232, FujiFilm Fellowship Topic Categories Veterinary and Comparative Immunology (VET)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (17)

J

Jessica Chen

1The University of Texas MD Anderson Cancer Center, Department of Lymphoma & Myeloma, Houston, United States

A

Abdulrahman Adam

Brigham and Women’s Hospital

R

Rahaman Ahmed

Brigham and Women’s Hospital

Z

Zahra Allahyari

Brigham and Women’s Hospital

N

Natalie Caputo

Harvard Medical School

J

John Dingus

Brigham and Women’s Hospital

N

Nicholas Garcia

Brigham and Women’s Hospital

A

Avneesh Gautam

Brigham and Women’s Hospital

J

Joyce Hwang

Brigham and Women’s Hospital

M

Meydan Kronrod

Brigham and Women’s Hospital

S

Sachin Kumar

S

Shahab Saghaei

Brigham and Women’s Hospital

F

Fang Tian

P

Pei Tong

M

Meghan Travers

Brigham and Women’s Hospital

D

Duane Wesemann

Brigham and Women’s Hospital

A

Adam Zuiani

Brigham and Women’s Hospital