Treatment with PTH (parathyroid hormone) or a high-Pi diet causes internalization of the type IIa sodium-dependent phosphate (Na/Pi IIa) co-transporter from the apical membrane and its degradation in the lysosome. A dibasic amino acid motif (KR) in the third intracellular loop of the co-transporter is essential for protein's PTH-induced retrieval. To elucidate the mechanism of internalization of Na/Pi IIa, we identified the interacting protein for the endocytic motif by yeast two-hybrid screening. We found a strong interaction of the Na/Pi IIa co-transporter with a small protein known as the PEX19 (human peroxisomal farnesylated protein; PxF, Pex19p). PEX19 can bind to the KR motif, but not to a mutant with this motif replaced with NI residues. PEX19 is highly expressed in mouse and rat kidney. Western blot analysis indicates that PEX19 is located in the cytosolic and brush-border membrane fractions (microvilli and the subapical component). Overexpression of PEX19 stimulated the endocytosis of the Na/Pi IIa co-transporter in opossum kidney cells in the absence of PTH. In conclusion, the present study indicates that PEX19 may be actively involved in controlling the internalization and trafficking of the Na/Pi IIa co-transporter.
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February 2004
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Research Article|
February 01 2004
Interaction of a farnesylated protein with renal type IIa Na/Pi co-transporter in response to parathyroid hormone and dietary phosphate
Mikiko ITO;
Mikiko ITO
*Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan
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Sachi IIDAWA;
Sachi IIDAWA
*Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan
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Michiyo IZUKA;
Michiyo IZUKA
*Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan
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Sakiko HAITO;
Sakiko HAITO
*Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan
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Hiroko SEGAWA;
Hiroko SEGAWA
*Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan
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Masashi KUWAHATA;
Masashi KUWAHATA
*Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan
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Ichiro OHKIDO;
Ichiro OHKIDO
†Division of Nephrology and Hypertension, Jikei University School of Medicine, Tokyo, Japan
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Hiroshi OHNO;
Hiroshi OHNO
‡Division of Molecular Membrane Biology, Cancer Research Institute, Kanazawa University Graduate School of Medical Science, Kanazawa, Ishikawa 920-0934, Japan
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Ken-ichi MIYAMOTO
Ken-ichi MIYAMOTO
1
*Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan
1To whom correspondence should be addressed (e-mail [email protected]).
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Publisher: Portland Press Ltd
Received:
August 12 2003
Revision Received:
October 13 2003
Accepted:
October 15 2003
Accepted Manuscript online:
October 15 2003
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London ©2004
2004
Biochem J (2004) 377 (3): 607–616.
Article history
Received:
August 12 2003
Revision Received:
October 13 2003
Accepted:
October 15 2003
Accepted Manuscript online:
October 15 2003
Citation
Mikiko ITO, Sachi IIDAWA, Michiyo IZUKA, Sakiko HAITO, Hiroko SEGAWA, Masashi KUWAHATA, Ichiro OHKIDO, Hiroshi OHNO, Ken-ichi MIYAMOTO; Interaction of a farnesylated protein with renal type IIa Na/Pi co-transporter in response to parathyroid hormone and dietary phosphate. Biochem J 1 February 2004; 377 (3): 607–616. doi: https://doi.org/10.1042/bj20031223
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