Structure and unusual binding mechanism of the hyaluronan receptor LYVE-1 mediating leucocyte entry to lymphatics

F Fouzia Bano S Suneale Banerji T Tao Ni (School of Biomedical Sciences, Faculty of Medicine, The University of Hong Kong) D Dixy E. Green K Kalila R. Cook I Iain W. Manfield P Paul L. DeAngelis E Emanuele Paci M Martin Lepšík R Robert J. C. Gilbert R Ralf P. Richter D David G. Jackson

Abstract

Abstract Immune surveillance involves the continual migration of antigen-scavenging immune cells from the tissues to downstream lymph nodes via lymphatic vessels. To enable such passage, cells first dock with the lymphatic entry receptor LYVE-1 on the outer surface of endothelium, using their endogenous hyaluronan glycocalyx, anchored by a second hyaluronan receptor, CD44. Why the process should require two different hyaluronan receptors and by which specific mechanism the LYVE-1•hyaluronan interaction enables lymphatic entry is however unknown. Here we describe the crystal structures and binding mechanics of murine and human LYVE-1•hyaluronan complexes. These reveal a highly unusual, sliding mode of ligand interaction, quite unlike the conventional sticking mode of CD44, in which the receptor grabs free hyaluronan chain-ends and winds them in through conformational re-arrangements in a deep binding cleft, lubricated by a layer of structured waters. Our findings explain the mode of action of a dedicated lymphatic entry receptor and define a distinct, low tack adhesive interaction that enables migrating immune cells to slide through endothelial junctions with minimal resistance, while clinging onto their hyaluronan glycocalyx for essential downstream functions.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

F

Fouzia Bano

S

Suneale Banerji

T

Tao Ni

School of Biomedical Sciences, Faculty of Medicine, The University of Hong Kong

D

Dixy E. Green

K

Kalila R. Cook

I

Iain W. Manfield

P

Paul L. DeAngelis

E

Emanuele Paci

M

Martin Lepšík

R

Robert J. C. Gilbert

R

Ralf P. Richter

D

David G. Jackson