Structural studies of the IFNλ4 receptor complex using cryoEM enabled by protein engineering

W William S. Grubbe B Bixia Zhang A Aileen Kauffman F Fabian Byléhn K Kasia Padoł H Hae-Gwang Jung S Seung Bum Park J Jessica M. Priest E Engin Özkan J Juan J. de Pablo (Pritzker School of Molecular Engineering) T T. Jake Liang M Minglei Zhao J Juan L. Mendoza

Abstract

Abstract IFNλ4 has posed a conundrum in human immunology since its discovery in 2013, with its expression linked to complications with viral clearance. While genetic and cellular studies revealed the detrimental effects of IFNλ4 expression, extensive structural and functional characterization has been limited by the inability to express and purify the protein, complicating explanations of its paradoxical behavior. In this work, we report a method for robust production of IFNλ4. We then use yeast surface display to affinity-mature IL10Rβ and solve the 72 kilodalton structures of IFNλ4 (3.26 Å) and IFNλ3 (3.00 Å) in complex with their receptors IFNλR1 and IL10Rβ using cryogenic electron microscopy. Comparison of the structures highlights differences in receptor engagement and reveals a distinct 12-degree rotation in overall receptor geometry, providing a potential mechanistic explanation for differences in cell signaling, downstream gene induction, and antiviral activities. Further, we perform a structural analysis using molecular modeling and simulation to identify a unique region of IFNλ4 that, when replaced, enables secretion of the protein from cells. These findings provide a structural and functional understanding of the IFNλ4 protein and enable future comprehensive studies towards correcting IFNλ4 dysfunction in large populations of affected patients.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 18, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

W

William S. Grubbe

B

Bixia Zhang

A

Aileen Kauffman

F

Fabian Byléhn

K

Kasia Padoł

H

Hae-Gwang Jung

S

Seung Bum Park

J

Jessica M. Priest

E

Engin Özkan

J

Juan J. de Pablo

Pritzker School of Molecular Engineering

T

T. Jake Liang

M

Minglei Zhao

J

Juan L. Mendoza