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MARCH1 protects the lipid raft and tetraspanin web from MHCII proteotoxicity in dendritic cells.


ABSTRACT: Dendritic cells (DCs) produce major histocompatibility complex II (MHCII) in large amounts to function as professional antigen presenting cells. Paradoxically, DCs also ubiquitinate and degrade MHCII in a constitutive manner. Mice deficient in the MHCII-ubiquitinating enzyme membrane-anchored RING-CH1, or the ubiquitin-acceptor lysine of MHCII, exhibit a substantial reduction in the number of regulatory T (Treg) cells, but the underlying mechanism was unclear. Here we report that ubiquitin-dependent MHCII turnover is critical to maintain homeostasis of lipid rafts and the tetraspanin web in DCs. Lack of MHCII ubiquitination results in the accumulation of excessive quantities of MHCII in the plasma membrane, and the resulting disruption to lipid rafts and the tetraspanin web leads to significant impairment in the ability of DCs to engage and activate thymocytes for Treg cell differentiation. Thus, ubiquitin-dependent MHCII turnover represents a novel quality-control mechanism by which DCs maintain homeostasis of membrane domains that support DC's Treg cell-selecting function.

SUBMITTER: Oh J 

PROVIDER: S-EPMC5881489 | biostudies-literature | 2018 Apr

REPOSITORIES: biostudies-literature

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MARCH1 protects the lipid raft and tetraspanin web from MHCII proteotoxicity in dendritic cells.

Oh Jaehak J   Perry Justin S A JSA   Pua Heather H   Irgens-Möller Nicole N   Ishido Satoshi S   Hsieh Chyi-Song CS   Shin Jeoung-Sook JS  

The Journal of cell biology 20180125 4


Dendritic cells (DCs) produce major histocompatibility complex II (MHCII) in large amounts to function as professional antigen presenting cells. Paradoxically, DCs also ubiquitinate and degrade MHCII in a constitutive manner. Mice deficient in the MHCII-ubiquitinating enzyme membrane-anchored RING-CH1, or the ubiquitin-acceptor lysine of MHCII, exhibit a substantial reduction in the number of regulatory T (Treg) cells, but the underlying mechanism was unclear. Here we report that ubiquitin-depen  ...[more]

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