Jessen H, Vorum H, Jørgensen K E, Sheikh M I
Institute of Medical Biochemistry, University of Aarhus, Denmark.
Biochim Biophys Acta. 1988 Jul 21;942(2):262-70. doi: 10.1016/0005-2736(88)90028-4.
Uptake of D-alanine against a concentration gradient has been shown to occur with isolated luminal-membrane vesicles from pars convoluta or pars recta of rabbit proximal tubule. Renal D-alanine transport systems, displaying the following characteristics, were shown: (1) In vesicles from pars convoluta, the uptake of D-alanine was mediated by both Na+-dependent and Na+-independent transport processes. It was found that an inwardly directed H+-gradient could drive the transport of D-alanine into the vesicles both in the presence and absence of Na+. Thus, in addition to Na+, the transport of D-alanine is influenced by the H+-gradient. (2) In vesicles from pars recta, the transient accumulation of D-alanine was strictly dependent on Na+, since no 'overshoot' was ever observed in the absence of Na+. Although the Na+-dependent uptake of D-alanine was stimulated at acid pH, H+ did not substitute for Na+, as it apparently does in pars convoluta, but instead potentiated the Na+ effect. (3) Addition of L-alanine to vesicle preparations, both from pars convoluta and from pars recta, specifically inhibited renal uptake of D-alanine. A comparison between the transport characteristics of D- and L-alanine indicated that these two isomers of alanine probably share common transport systems located along the proximal tubule of rabbit kidney.
已表明,兔近端小管曲部或直部的分离管腔膜囊泡可逆浓度梯度摄取D-丙氨酸。研究显示,肾D-丙氨酸转运系统具有以下特征:(1) 在曲部的囊泡中,D-丙氨酸的摄取由Na+依赖性和Na+非依赖性转运过程介导。研究发现,无论有无Na+,内向的H+梯度均可驱动D-丙氨酸转运至囊泡中。因此,除Na+外,D-丙氨酸的转运还受H+梯度影响。(2) 在直部的囊泡中,D-丙氨酸的瞬时积累严格依赖于Na+,因为在无Na+时从未观察到“过冲”现象。尽管在酸性pH下,D-丙氨酸的Na+依赖性摄取会受到刺激,但H+并不能像在曲部那样替代Na+,而是增强了Na+的作用。(3) 向曲部和直部的囊泡制剂中添加L-丙氨酸,可特异性抑制肾对D-丙氨酸的摄取。D-丙氨酸和L-丙氨酸转运特征的比较表明,这两种丙氨酸异构体可能共用位于兔肾近端小管的共同转运系统。