首页> 美国卫生研究院文献>The Journal of Physiology >Serine uptake by luminal and basolateral membrane vesicles from rabbit kidney.
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Serine uptake by luminal and basolateral membrane vesicles from rabbit kidney.

机译:兔肾脏的腔和基底外侧膜囊泡对丝氨酸的摄取。

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摘要

The mechanism of renal transport of L- and D-serine by membrane vesicles prepared from either whole cortex, pars convoluta or pars recta of rabbit proximal tubule was studied by a rapid filtration technique and by a spectrophotometric method using a potential-sensitive carbocyanine dye. Transport studies carried out with different salt gradients and by employing various ionophores showed that uptake of both L- and D-serine by luminal membrane vesicles from whole cortex was mediated by an Na+-dependent and electrogenic transport process. Eadie-Hofstee analysis of experimental data, obtained under extravesicular greater than intravesicular NaCl gradients, revealed the existence of multiple transport systems for L-serine but only one system for the D-isomer. The value of KA (the concentration producing a half-maximal optical response) for the D-serine transport system was calculated to be approximately 30 mM. Luminal membrane vesicles from pars convoluta take up both L- and D-serine by a single and common transport system. KA values for L- and D-serine transport were calculated to be 3.7 and 30 mM, respectively. Luminal membrane vesicles from pars recta take up L-serine by means of two transport systems, one of high affinity (KA = 0.37 mM) and the other of low affinity (KA = 10 mM). By contrast, no D-serine transport by these membrane vesicles could be detected. Uptake of L-serine by basolateral membrane vesicles is Na+ independent and electroneutral. Filtration studies showed that the transport is saturable (Km = 25-30 mM) and is inhibited by the presence of L-phenylalanine (but not by D-serine), indicating carrier-mediated uptake of L-serine.
机译:通过快速过滤技术和分光光度法,使用电位敏感的碳花青染料,研究了由兔近端小管的整个皮层,卷积的pars直肠或pars的直肠制备的膜囊泡对L-和D-丝氨酸的肾脏转运机制。用不同的盐梯度和通过使用各种离子载体进行的运输研究表明,整个Na皮质的腔膜囊泡对L-和D-丝氨酸的吸收是由Na +依赖性和电致运输过程介导的。 Eadie-Hofstee对实验数据的分析(在囊外大于囊内NaCl梯度下获得)揭示了L-丝氨酸存在多种转运系统,但D-异构体只有一种转运系统。计算出D-丝氨酸转运系统的KA值(产生最大光学响应的​​一半的浓度)约为30mM。来自pars convoluta的发光膜囊泡通过单一且通用的运输系统吸收L-和D-丝氨酸。 L-和D-丝氨酸转运的KA值分别计算为3.7和30mM。来自直肠的发光膜囊泡通过两种转运系统吸收L-丝氨酸,一种为高亲和力(KA = 0.37 mM),另一种为低亲和力(KA = 10 mM)。相反,未检测到这些膜囊泡的D-丝氨酸转运。基底外侧膜囊泡对L-丝氨酸的吸收不依赖于Na +且是电中性的。过滤研究表明,该运输是可饱和的(Km = 25-30 mM),并受到L-苯丙氨酸(而不是D-丝氨酸)的抑制,表明载体介导的L-丝氨酸摄取。

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