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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Influence of proton and essential histidyl residues on the transport kinetics of the H+/peptide cotransport systems in intestine (PEPT 1) and kidney (PEPT 2)
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Influence of proton and essential histidyl residues on the transport kinetics of the H+/peptide cotransport systems in intestine (PEPT 1) and kidney (PEPT 2)

机译:质子和必要的组氨酸残基对肠道(PEPT 1)和肾脏(PEPT 2)中H + /肽共转运系统的转运动力学的影响

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The mechanism by which H+ alters the kinetics of the H+-coupled peptide transporters PEPT 1 and PEPT 2 was investigated in two different cell lines which differentially express these transporters, namely Caco-2 cells (PEPT 1) and SKPT cells (PEPT 2). The effects of H+ on the affinity and the maximal velocity of Gly-Sar uptake were analyzed in these cells under identical conditions. In both cells, H+ influenced only the maximal velocity of uptake and not the apparent affinity. The effects of H+ on the IC50 values (i.e., concentration necessary to cause 50% inhibition) of the cationic dipeptide Ala-Lys and the anionic dipeptide Ala-Asp for inhibition of Gly-Sar uptake were also investigated. H+ did not change the IC50 value for Ala-Lys but did decrease the IC50 value for Ala-Asp considerably. The influence of diethylpyrocarbonate (DEP) on the kinetic parameters of PEPT 1 and PEPT 2 was then studied. Histidyl residues are the most likely amino acid residues involved in H+ binding and translocation in H+-coupled transport systems and DEP is known to chemically modify histidyl residues and block their function. DEP treatment altered the maximal velocity of Gly-Sar uptake but had no effect on its Kt (Michaelis-Menten constant) or the IC50 values of Ala-Lys or Ala-Asp for the inhibition of Gly-Sar uptake. It is concluded that H+ stimulates PEPT 1 and PEPT 2 primarily by increasing the maximal velocity of the transporters with no detectable influence on the substrate affinity.
机译:在两个不同地表达这些转运蛋白的细胞系中,即Caco-2细胞(PEPT 1)和SKPT细胞(PEPT 2),研究了H +改变H +偶联肽转运蛋白PEPT 1和PEPT 2动力学的机理。在相同条件下,在这些细胞中分析了H +对Gly-Sar摄取的亲和力和最大速度的影响。在两个细胞中,H +仅影响最大摄取速度,而不影响表观亲和力。还研究了H +对抑制Gly-Sar摄取的阳离子二肽Ala-Lys和阴离子二肽Ala-Asp的IC50值(即引起50%抑制所必需的浓度)的影响。 H +不会改变Ala-Lys的IC50值,但是会大大降低Ala-Asp的IC50值。然后研究了焦碳酸二乙酯(DEP)对PEPT 1和PEPT 2动力学参数的影响。组氨酸残基是与H +偶联的运输系统中H +结合和易位有关的最可能的氨基酸残基,并且已知DEP可化学修饰组氨酸残基并阻断其功能。 DEP处理改变了Gly-Sar摄取的最大速度,但对其Kt(Michaelis-Menten常数)或Ala-Lys或Ala-Asp的IC50值的抑制作用均无影响。结论是H +主要通过增加转运蛋白的最大速度刺激PEPT 1和PEPT 2,而对底物亲和力没有可检测的影响。

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