Ito Mikiko, Iidawa Sachi, Izuka Michiyo, Haito Sakiko, Segawa Hiroko, Kuwahata Masashi, Ohkido Ichiro, Ohno Hiroshi, Miyamoto Ken-Ichi
Department of Nutrition, Tokushima University, School of Medicine, Kuramoto-cho 3-18-15, Tokushima City 770-8503, Japan.
Biochem J. 2004 Feb 1;377(Pt 3):607-16. doi: 10.1042/BJ20031223.
Treatment with PTH (parathyroid hormone) or a high-P(i) diet causes internalization of the type IIa sodium-dependent phosphate (Na/P(i) 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/P(i) IIa, we identified the interacting protein for the endocytic motif by yeast two-hybrid screening. We found a strong interaction of the Na/P(i) 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/P(i) 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/P(i) IIa co-transporter.
用甲状旁腺激素(PTH)治疗或高磷饮食会导致IIa型钠依赖性磷酸盐(Na/P(i) IIa)共转运体从顶端膜内化并在溶酶体中降解。共转运体第三个细胞内环中的一个双碱性氨基酸基序(KR)对于蛋白质的PTH诱导的回收至关重要。为了阐明Na/P(i) IIa内化的机制,我们通过酵母双杂交筛选鉴定了内吞基序的相互作用蛋白。我们发现Na/P(i) IIa共转运体与一种称为PEX19(人过氧化物酶体法尼基化蛋白;PxF,Pex19p)的小蛋白有强烈相互作用。PEX19可以结合KR基序,但不能结合该基序被NI残基取代的突变体。PEX19在小鼠和大鼠肾脏中高度表达。蛋白质印迹分析表明PEX19位于胞质和刷状缘膜部分(微绒毛和顶端下成分)。在没有PTH的情况下,PEX19的过表达刺激了负鼠肾细胞中Na/P(i) IIa共转运体的内吞作用。总之,本研究表明PEX19可能积极参与控制Na/P(i) IIa共转运体的内化和运输。