Friedrich M, Murer H, Berger E G
Institute of Physiology, University of Zürich, Switzerland.
Pflugers Arch. 1991 May;418(4):393-9. doi: 10.1007/BF00550877.
Substitution of the alpha-amino group of amino acids by hydroxyl groups yields hydroxy analogues (HA), which have been ascribed beneficial effects in nitrogen-sparing diets for uremic patients. In this study, intestinal uptake of L-leucine HA (L-LeuHA) and L-lactate into rabbit jejunal brush-border membrane vesicles was investigated. An inward-directed H+ or Na+ gradient stimulated uptake of both labelled substrates in a voltage-clamped assay. The H+ gradient was the major driving force of uptake as compared with the Na+ gradient, and it led to a transient accumulation of both L-LeuHA and L-lactate. The proton ionophore carbonylcyanide p-trifluoromethoxyphenylhydrazone (FCCP) reduced the initial H(+)-gradient-driven uptake rates of both substrates, but was without effect on Na(+)-gradient-driven uptakes. The H(+)-gradient-driven L-LeuHA uptake was saturable (apparent Kt = 15.4 mM). Alpha-HA of L-leucine, L-isoleucine, L-valine, D-leucine, D-valine or L-lactate inhibited the H(+)-gradient-driven L-LeuHA or L-lactate uptakes whereas free branched-chain amino acids had no effect. Preloading the vesicles with one of the L- or D-HA of branched-chain amino acids or with L-lactate stimulated tracer L-LeuHA and also tracer L-lactate uptakes in the presence of a H+ gradient. It is concluded that H(+)-gradient-driven transport of L- and D-stereoisomeric HA of branched-chain amino acids as well as of L-lactate across rabbit intestinal brush-border membranes is mediated by the same carrier. Furthermore, there exists a Na+ gradient-driven L-lactate transport system in the rabbit intestinal brush-border membrane.
将氨基酸的α-氨基用羟基取代可产生羟基类似物(HA),这些类似物在尿毒症患者的氮节约饮食中具有有益作用。在本研究中,研究了L-亮氨酸HA(L-LeuHA)和L-乳酸在兔空肠刷状缘膜囊泡中的肠道摄取情况。在电压钳制实验中,内向的H⁺或Na⁺梯度刺激了两种标记底物的摄取。与Na⁺梯度相比,H⁺梯度是摄取的主要驱动力,并且它导致L-LeuHA和L-乳酸的瞬时积累。质子离子载体羰基氰化物对三氟甲氧基苯腙(FCCP)降低了两种底物最初由H⁺梯度驱动的摄取速率,但对由Na⁺梯度驱动的摄取没有影响。由H⁺梯度驱动的L-LeuHA摄取是可饱和的(表观Kt = 15.4 mM)。L-亮氨酸、L-异亮氨酸、L-缬氨酸、D-亮氨酸、D-缬氨酸或L-乳酸的α-HA抑制了由H⁺梯度驱动的L-LeuHA或L-乳酸摄取,而游离支链氨基酸则没有影响。用支链氨基酸的L-或D-HA之一或L-乳酸预加载囊泡,在存在H⁺梯度的情况下刺激示踪剂L-LeuHA以及示踪剂L-乳酸的摄取。得出的结论是,由H⁺梯度驱动的支链氨基酸的L-和D-立体异构体HA以及L-乳酸跨兔肠道刷状缘膜的转运是由同一载体介导的。此外,兔肠道刷状缘膜中存在由Na⁺梯度驱动的L-乳酸转运系统。