FcRL4 is an IgA receptor that primarily binds the joining chain

FcRL4 — рецептор IgA, который преимущественно связывает соединительную цепь
Yuxin Wang, Junyu Xiao, Chen Su, Mingqi Zhu, Xiaoke Yang
2026-06-17

FcRL4IgA receptorcryo-EM structuredimeric IgA (dIgA)joining chain
Immunoglobulin A (IgA) is a crucial component of the human immune system, and its interaction with receptors is essential for immune regulation. Fc-receptor-like 4 (FcRL4) is an IgA receptor that selectively binds systemic IgA containing the joining chain (J-chain). The molecular mechanism of this interaction has remained unclear. Here, we present a cryo-EM structure of FcRL4 complexed with the dIgA core (Fcα dimer and J-chain), revealing a 1:1 binding stoichiometry. FcRL4 primarily interacts with the J-chain but can nevertheless discriminate against J-chain-containing IgM through an entropic penalty mechanism. Our structure also explains why FcRL4 does not bind secretory IgA, as the secretory component would hinder FcRL4 binding. Functional studies indicate that FcRL4 lacks the ability to internalize IgA or IgA immune complex. These findings provide fresh insights into IgA biology.
1
Cryo-EM structure of FcRL4 bound to dIgA core (Fcα dimer + J-chain) reveals a 1:1 binding stoichiometry.
2
FcRL4 discriminates against J-chain-containing IgM via an entropic penalty mechanism.
3
FcRL4 is an IgA receptor that selectively binds systemic IgA containing the joining chain (J-chain).
4
FcRL4 lacks the ability to internalize IgA or IgA immune complexes, based on functional studies.
5
FcRL4 primarily contacts the J-chain in the IgA dimer, indicating J-chain-centric recognition.
6
Secretory component of secretory IgA sterically hinders FcRL4 binding, explaining lack of binding to sIgA.

FcRL4 receptor complexed with dimeric IgA core (Fcα dimer and J-chain)

Molecular binding interaction and specificity by which FcRL4 primarily engages the J-chain of J-chain-containing IgA (1:1 stoichiometry), its discrimination against J-chain-containing IgM via entropic penalty, lack of binding to secretory IgA, and inability to internalize IgA/IgA immune complexes

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2026-06-17
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Yuxin Wang
Junyu Xiao
Chen Su
Mingqi Zhu
Xiaoke Yang
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