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MUPP1 Complexes Renal K+ Channels to Alter Cell Surface Expression and Whole Cell Currents (CROSBI ID 205868)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Sinđić, ALeksandra ; Huang, Chunfa ; Chen, An-Ping ; Ding, Yaxian ; Miller-Little, A. William ; Che, Danian ; Romero, F. Michael ; Miller, R. Tyler MUPP1 Complexes Renal K+ Channels to Alter Cell Surface Expression and Whole Cell Currents // American journal of physiology. Renal physiology, 297 (2009), 1; F36-F45. doi: 10.1152/ajprenal.90559.2008

Podaci o odgovornosti

Sinđić, ALeksandra ; Huang, Chunfa ; Chen, An-Ping ; Ding, Yaxian ; Miller-Little, A. William ; Che, Danian ; Romero, F. Michael ; Miller, R. Tyler

engleski

MUPP1 Complexes Renal K+ Channels to Alter Cell Surface Expression and Whole Cell Currents

We previously found that the Casensing receptor (CaR) interacts with and inactivates the inwardly-rectifying K channel, Kir4.2 that is expressed in the kidney cortex and that has a C-terminal PDZ domain. In order to identify potential scaffolding proteins that could organize a macromolecular signaling complex involving the CaR and Kir4.2, we used yeast two hybrid cloning with the C-terminal 125 AA of Kir4.2 as bait to screen a human kidney cDNA library. We identified two independent partial cDNAs corresponding to the C-terminal 900 AA of MUPP1, a protein containing 13 PDZ binding domains and that is expressed in the kidney in tight junctions and lateral borders of epithelial cells. When expressed in HEK-293 cells, Kir4.2 co-immunoprecipitates reciprocally with MUPP1 but not a Kir4.2 construct lacking the four C-terminal amino acids, Kir5.1, or the CaR. MUPP1 and Kir4.2 co-immunoprecipitate reciprocally from rat kidney cortex extracts. Co-expression of MUPP1 with Kir4.2 in HEK293 cells leads to reduced cell surface expression of Kir4.2 as assessed by cell surface biotinylation. Coexpression of MUPP1 and Kir4.2 in Xenopus oocytes results in reduced whole cell currents compared to Kir4.2 alone, while expression of Kir4.2ΔPDZ results in minimal currents, and is not affected by co-expression with MUPP1. Immunofluorecence studies of oocytes demonstrate that MUPP1 reduces Kir4.2 membrane localization. These results indicate that Kir4.2 interacts selectively with MUPP1 to affect its cell surface expression. Thus, MUPP1 and Kir4.2 may participate in a protein complex in the nephron that could regulate transport of K+ as well as other ions.

MUPP1 complexes; renal K+ channels

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Podaci o izdanju

297 (1)

2009.

F36-F45

objavljeno

1931-857X

10.1152/ajprenal.90559.2008

Povezanost rada

Temeljne medicinske znanosti

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