Javascript must be enabled to continue!
Golgi Alpha1,2-Mannosidase IA Promotes Efficient Endoplasmic Reticulum-Associated Degradation of NKCC2
View through CrossRef
Mutations in the apically located kidney Na-K-2Cl cotransporter NKCC2 cause type I Bartter syndrome, a life-threatening kidney disorder. We previously showed that transport from the ER represents the limiting phase in NKCC2 journey to the cell surface. Yet very little is known about the ER quality control components specific to NKCC2 and its disease-causing mutants. Here, we report the identification of Golgi alpha1, 2-mannosidase IA (ManIA) as a novel binding partner of the immature form of NKCC2. ManIA interaction with NKCC2 takes place mainly at the cis-Golgi network. ManIA coexpression decreased total NKCC2 protein abundance whereas ManIA knock-down produced the opposite effect. Importantly, ManIA coexpression had a more profound effect on NKCC2 folding mutants. Cycloheximide chase assay showed that in cells overexpressing ManIA, NKCC2 stability and maturation are heavily hampered. Deleting the cytoplasmic region of ManIA attenuated its interaction with NKCC2 and inhibited its effect on the maturation of the cotransporter. ManIA-induced reductions in NKCC2 expression were offset by the proteasome inhibitor MG132. Likewise, kifunensine treatment greatly reduced ManIA effect, strongly suggesting that mannose trimming is involved in the enhanced ERAD of the cotransporter. Moreover, depriving ManIA of its catalytic domain fully abolished its effect on NKCC2. In summary, our data demonstrate the presence of a ManIA-mediated ERAD pathway in renal cells promoting retention and degradation of misfolded NKCC2 proteins. They suggest a model whereby Golgi ManIA contributes to ERAD of NKCC2, by promoting the retention, recycling, and ERAD of misfolded proteins that initially escape protein quality control surveillance within the ER.
Title: Golgi Alpha1,2-Mannosidase IA Promotes Efficient Endoplasmic Reticulum-Associated Degradation of NKCC2
Description:
Mutations in the apically located kidney Na-K-2Cl cotransporter NKCC2 cause type I Bartter syndrome, a life-threatening kidney disorder.
We previously showed that transport from the ER represents the limiting phase in NKCC2 journey to the cell surface.
Yet very little is known about the ER quality control components specific to NKCC2 and its disease-causing mutants.
Here, we report the identification of Golgi alpha1, 2-mannosidase IA (ManIA) as a novel binding partner of the immature form of NKCC2.
ManIA interaction with NKCC2 takes place mainly at the cis-Golgi network.
ManIA coexpression decreased total NKCC2 protein abundance whereas ManIA knock-down produced the opposite effect.
Importantly, ManIA coexpression had a more profound effect on NKCC2 folding mutants.
Cycloheximide chase assay showed that in cells overexpressing ManIA, NKCC2 stability and maturation are heavily hampered.
Deleting the cytoplasmic region of ManIA attenuated its interaction with NKCC2 and inhibited its effect on the maturation of the cotransporter.
ManIA-induced reductions in NKCC2 expression were offset by the proteasome inhibitor MG132.
Likewise, kifunensine treatment greatly reduced ManIA effect, strongly suggesting that mannose trimming is involved in the enhanced ERAD of the cotransporter.
Moreover, depriving ManIA of its catalytic domain fully abolished its effect on NKCC2.
In summary, our data demonstrate the presence of a ManIA-mediated ERAD pathway in renal cells promoting retention and degradation of misfolded NKCC2 proteins.
They suggest a model whereby Golgi ManIA contributes to ERAD of NKCC2, by promoting the retention, recycling, and ERAD of misfolded proteins that initially escape protein quality control surveillance within the ER.
Related Results
AUP1 Regulates the Endoplasmic Reticulum-Associated Degradation and Polyubiquitination of NKCC2
AUP1 Regulates the Endoplasmic Reticulum-Associated Degradation and Polyubiquitination of NKCC2
Inactivating mutations of kidney Na-K-2Cl cotransporter NKCC2 lead to antenatal Bartter syndrome (BS) type 1, a life-threatening salt-losing tubulopathy. We previously reported tha...
Transient Body Fluid Accumulation and Enhanced NKCC2 Expression in Gerbils with Brain Infarction
Transient Body Fluid Accumulation and Enhanced NKCC2 Expression in Gerbils with Brain Infarction
<i>Background:</i> Enhanced expression of a kidney-specific sodium co-transporter (NKCC2: Na-K-2Cl co-transporter) in the thick ascending limb of Henle has been identif...
Diacidic Motifs in the Carboxyl Terminus Are Required for ER Exit and Translocation to the Plasma Membrane of NKCC2
Diacidic Motifs in the Carboxyl Terminus Are Required for ER Exit and Translocation to the Plasma Membrane of NKCC2
Mutations in the apical Na-K-2Cl co-transporter, NKCC2, cause type I Bartter syndrome (BS1), a life-threatening kidney disease. We have previously demonstrated that the BS1 variant...
Differential Effects of STCH and Stress-Inducible Hsp70 on the Stability and Maturation of NKCC2
Differential Effects of STCH and Stress-Inducible Hsp70 on the Stability and Maturation of NKCC2
Mutations in the Na-K-2Cl co-transporter NKCC2 lead to type I Bartter syndrome, a life-threatening kidney disease. We previously showed that export from the ER constitutes the limi...
Kinetics of Arf1 inactivation regulates Golgi organisation and function in non-adherent fibroblasts
Kinetics of Arf1 inactivation regulates Golgi organisation and function in non-adherent fibroblasts
ABSTRACT
Arf1 belongs to the Arf family of small GTPases that localise at the Golgi and plasma membrane. Active Arf1 plays a crucial role in regulating Golgi organis...
STX5’s flexibility in SNARE pairing supports Golgi functions
STX5’s flexibility in SNARE pairing supports Golgi functions
Abstract
The intracellular transport system is an evolutionally conserved, essential, and highly regulated network of organelles and transport vesicles that traffic...
Abstract 1330: Golgi disorganization and ER stress: the mechanism underlying alcohol-mediated prostate cancer progression
Abstract 1330: Golgi disorganization and ER stress: the mechanism underlying alcohol-mediated prostate cancer progression
Abstract
The link between prostate cancer (PCa) risk and alcohol consumption has long been debated. In our recent analysis of the epidemiologic evidence for this lin...
Research hotspots and frontiers of endoplasmic reticulum in glomerular podocytes: a bibliometric and visual analysis from 2005 to 2023
Research hotspots and frontiers of endoplasmic reticulum in glomerular podocytes: a bibliometric and visual analysis from 2005 to 2023
BackgroundThe glomerular podocyte endoplasmic reticulum is a critical component in renal function, yet its research landscape is not fully understood. This study aims to map the ex...

