Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Interaction of Mint3 with Furin regulates the localization of Furin in the trans-Golgi network

View through CrossRef
Furin is a proprotein convertase that cycles between the plasma membrane, endosomes and the trans-Golgi network (TGN), maintaining a predominant distribution in the latter. Mint3, a member of the Mint protein family, is involved in the signaling and trafficking of membrane proteins. Until now, little has been known about the roles of Mint3 in the localization or trafficking of Furin. Here, using co-immunoprecipitation and immunofluorescence assays, we show that Mint3 interacts with Furin in the Golgi compartment of HeLa cells. Knockdown of endogenous Mint3 expression by RNA interference disrupts the TGN-specific localization of Furin and increases its distribution in endosomes. We further demonstrate that the phosphotyrosine-binding (PTB) domain of Mint3 is essential for the binding of Furin and that this binding affects the TGN-specific localization of Furin. Moreover, mutation studies of Furin indicate that Mint3 regulates Furin distribution mainly through interaction with the acidic peptide signal of Furin. Collectively, these data suggest that the interaction between the PTB domain of Mint3 and the acidic peptide signal of Furin regulates the specific localization of Furin in the TGN.
Title: Interaction of Mint3 with Furin regulates the localization of Furin in the trans-Golgi network
Description:
Furin is a proprotein convertase that cycles between the plasma membrane, endosomes and the trans-Golgi network (TGN), maintaining a predominant distribution in the latter.
Mint3, a member of the Mint protein family, is involved in the signaling and trafficking of membrane proteins.
Until now, little has been known about the roles of Mint3 in the localization or trafficking of Furin.
Here, using co-immunoprecipitation and immunofluorescence assays, we show that Mint3 interacts with Furin in the Golgi compartment of HeLa cells.
Knockdown of endogenous Mint3 expression by RNA interference disrupts the TGN-specific localization of Furin and increases its distribution in endosomes.
We further demonstrate that the phosphotyrosine-binding (PTB) domain of Mint3 is essential for the binding of Furin and that this binding affects the TGN-specific localization of Furin.
Moreover, mutation studies of Furin indicate that Mint3 regulates Furin distribution mainly through interaction with the acidic peptide signal of Furin.
Collectively, these data suggest that the interaction between the PTB domain of Mint3 and the acidic peptide signal of Furin regulates the specific localization of Furin in the TGN.

Related Results

Xenon Gas Inhibits the Enzyme Furin In Vitro
Xenon Gas Inhibits the Enzyme Furin In Vitro
Abstract: Aims: Certain cancers, pathogenic infections, and other diseases are facilitated by the host enzyme furin, a calcium-dependent serine protease that is the most...
Helium as an In Vitro Furin Inhibitor
Helium as an In Vitro Furin Inhibitor
Abstract Aims Certain cancers, pathogenic infections, and other diseases are facilitated by the host enzyme furin, a calcium-de...
Furin recognizable “prrar” motif is ubiquitously present in nature in non-viral proteins
Furin recognizable “prrar” motif is ubiquitously present in nature in non-viral proteins
Furin is a calcium-dependent endopeptidase. It is found in all vertebrates and many invertebrates. It is localized in the Golgi apparatus, and in the extra cellular space. It funct...
Proprotein-Processing Endoprotease Furin Controls Growth of Pancreatic β-Cells
Proprotein-Processing Endoprotease Furin Controls Growth of Pancreatic β-Cells
We have previously reported that in the well-differentiated β-cell line MIN6 cells, theβ-cell–specific differentiated characteristics, such as insulin content, expression of prohor...
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...
Glycans function as a Golgi export signal to promote the constitutive exocytic trafficking
Glycans function as a Golgi export signal to promote the constitutive exocytic trafficking
Abstract Most proteins in the secretory pathway are glycosylated. However, the role of glycans in the membrane trafficking is still unclear. Here...

Back to Top