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Target Concepts:
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Query: EC:3.4.25.1 (
proteasome
)
28,817
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Misfolded ER proteins are retrotranslocated into the cytosol for degradation via the ubiquitin-
proteasome
system. The human cytomegalovirus protein US11 exploits this ER-associated protein degradation (ERAD) pathway to downregulate HLA class I molecules in virus-infected cells, thereby evading elimination by cytotoxic T-lymphocytes. US11-mediated degradation of HLA class I has been instrumental in the identification of key components of mammalian ERAD, including Derlin-1, p97, VIMP and SEL1L. Despite this, the process governing retrotranslocation of the substrate is still poorly understood. Here using a high-coverage genome-wide shRNA library, we identify the uncharacterized protein
TMEM129
and the ubiquitin-conjugating E2 enzyme UBE2J2 to be essential for US11-mediated HLA class I downregulation.
TMEM129
is an unconventional C4C4-type RING finger E3 ubiquitin ligase that resides within a complex containing various other ERAD components, including Derlin-1, Derlin-2, VIMP and p97, indicating that
TMEM129
is an integral part of the ER-resident dislocation complex mediating US11-induced HLA class I degradation.
...
PMID:A high-coverage shRNA screen identifies TMEM129 as an E3 ligase involved in ER-associated protein degradation. 2480 18
The US11 gene product of human cytomegalovirus promotes viral immune evasion by hijacking the endoplasmic reticulum (ER)-associated degradation (ERAD) pathway. US11 initiates dislocation of newly translocated MHC I from the ER to the cytosol for
proteasome
-mediated degradation. Despite the critical role for ubiquitin in this degradation pathway, the responsible E3 ligase is unknown. In a forward genetic screen for host ERAD components hijacked by US11 in near-haploid KBM7 cells, we identified
TMEM129
, an uncharacterized polytopic membrane protein.
TMEM129
is essential and rate-limiting for US11-mediated MHC-I degradation and acts as a novel ER resident E3 ubiquitin ligase.
TMEM129
contains an unusual cysteine-only RING with intrinsic E3 ligase activity and is recruited to US11 via Derlin-1. Together with its E2 conjugase Ube2J2,
TMEM129
is responsible for the ubiquitination, dislocation, and subsequent degradation of US11-associated MHC-I. US11 engages two degradation pathways: a Derlin-1/
TMEM129
-dependent pathway required for MHC-I degradation and a SEL1L/HRD1-dependent pathway required for "free" US11 degradation. Our data show that
TMEM129
is a novel ERAD E3 ligase and the central component of a novel mammalian ERAD complex.
...
PMID:TMEM129 is a Derlin-1 associated ERAD E3 ligase essential for virus-induced degradation of MHC-I. 2503 Apr 48
Misfolded proteins from the endoplasmic reticulum (ER) are transported back into the cytosol for degradation via the ubiquitin-
proteasome
system. The human cytomegalovirus protein US11 hijacks this ER-associated protein degradation (ERAD) pathway to downregulate human leukocyte antigen (HLA) class I molecules in virus-infected cells, thereby evading elimination by cytotoxic T-lymphocytes. Recently, we identified the E3 ubiquitin ligase
transmembrane protein 129
(
TMEM129
) as a key player in this process, where interference with
TMEM129
activity in human cells completely abrogates US11-mediated class I degradation. Here, we set out to further characterize
TMEM129
. We show that
TMEM129
is a non-glycosylated protein containing a non-cleaved signal anchor sequence. By glycosylation scanning mutagenesis, we show that
TMEM129
is a tri-spanning ER-membrane protein that adopts an N
exo
-C
cyto
orientation. This insertion in the ER membrane positions the C-terminal really interesting new gene (RING) domain of
TMEM129
in the cytosol, making it available to catalyze ubiquitination reactions that are required for cytosolic degradation of secretory proteins.
...
PMID:The E3 Ubiquitin Ligase TMEM129 Is a Tri-Spanning Transmembrane Protein. 2785 84