Scriver C R, McInnes R R, Mohyuddin F
Proc Natl Acad Sci U S A. 1975 Apr;72(4):1431-5. doi: 10.1073/pnas.72.4.1431.
The homozygous PRO/Re mouse has less than 1 percent of the very high proline oxidase activity that characterizes normal kidney cortex. In PRO/Re mouse the endogenous proline concentration is eight times normal in plasma and four times normal in kidney cortex cell, but 50 times normal in urine. The integrity of the membrane transport systems for proline uptake at the antiluminal surface of absorbing epithelium is retained in PRO/Re kidney, as determined by the slice method. Clearance studies in vivo under steady-state conditions indicate that the integrity of the luminal uptake system shared by glycine and proline, and serving proline absorption, is also intact. The exaggerated renal clearance of proline in PRO/Re mice (50 times normal) is explained when its raised intracellular concentration, caused by impaired proline oxidation, is considered. Backflux into urine flowing down the nephron will occur under these conditions, thus impairing net reclamation of proline in PRO/Re kidney. The findings reveal that membrane transport and intracellular metabolism of a substrate are, indeed, independent functions, but that metabolism of a substance can influence its transcellular transport.
纯合子PRO/Re小鼠的脯氨酸氧化酶活性极低,不到正常肾皮质特征性活性的1%。在PRO/Re小鼠中,内源性脯氨酸浓度在血浆中是正常水平的8倍,在肾皮质细胞中是正常水平的4倍,但在尿液中是正常水平的50倍。通过切片法测定,PRO/Re肾中吸收上皮抗腔面脯氨酸摄取的膜转运系统的完整性得以保留。稳态条件下的体内清除率研究表明,由甘氨酸和脯氨酸共享、用于脯氨酸吸收的腔面摄取系统的完整性也完好无损。当考虑到脯氨酸氧化受损导致细胞内浓度升高时,就可以解释PRO/Re小鼠中脯氨酸肾清除率过高(为正常水平的50倍)的现象。在这些情况下,脯氨酸会回流到沿肾单位向下流动的尿液中,从而损害PRO/Re肾中脯氨酸的净重吸收。这些发现表明,底物的膜转运和细胞内代谢确实是独立的功能,但物质的代谢可以影响其跨细胞转运。