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Effect of arginine modification on kidney brush-border-membrane transport activity.

机译:精氨酸修饰对肾脏刷膜跨膜转运活性的影响。

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摘要

The effect of phenylglyoxylation on brush-border-membrane functions was studied with membrane vesicles from rat kidney cortex. Na+-gradient-dependent uptake of phosphate, glucose and alanine was inhibited by 65, 88 and 70% by pre-incubation of vesicles with 50 mM-phenylglyoxal for 2 min. The inhibition showed a dependency for alkaline pH. Borate co-operativity in butanedione inactivation was used to prove that inhibition was caused by arginine modification. Intravesicular volumes, alkaline phosphatase, aminopeptidase M and Na+-H+ exchange were not affected by phenylglyoxal treatment. Inhibition of phosphate uptake was studied in more detail and showed that the chemical modification introduced by phenylglyoxal inhibited the overshoot of phosphate uptake caused by the Na+ gradient, and decreased the apparent maximal velocity of the phosphate-transport system in its interaction with Na+. Phosphate uptake measured in the absence of Na+ was not affected by phenylglyoxal. Shunting of the transmembrane electrical potential with K+ and valinomycin had no effect on phenylglyoxal inhibition, proving that the alteration of transmembrane electrical potential could not be responsible for this effect. Phenylglyoxal had no ionophoric effect on the Na+ gradients studied (1-100 mM). Na+ efflux was also unaffected by phenylglyoxal treatment. Na+, harmaline and amiloride were ineffective in protecting against phenylglyoxal inhibition, suggesting that the site modified was not an Na+-binding site. These results indicate the involvement of highly reactive arginine residues in phosphate, glucose and alanine uptake.
机译:用大鼠肾皮质的膜囊泡研究了苯乙醛酸化作用对刷状边界膜功能的影响。通过将囊泡与50 mM-苯基乙二醛预孵育2分钟,可以抑制65、88和70%的Na +梯度依赖性的磷酸盐,葡萄糖和丙氨酸的摄取。该抑制显示出对碱性pH的依赖性。硼酸在丁二酮失活中的协同作用被用来证明抑制作用是由精氨酸修饰引起的。苯乙醛处理不影响囊内体积,碱性磷酸酶,氨肽酶M和Na + -H +交换。更加详细地研究了对磷酸盐吸收的抑制作用,结果表明,苯乙二醛引入的化学修饰抑制了Na +梯度引起的磷酸盐吸收过量,并降低了磷酸盐转运系统与Na +相互作用的表观最大速度。在不存在Na +的情况下测得的磷酸盐吸收不受苯乙二醛的影响。用K +和缬氨霉素分流跨膜电位对苯乙二醛的抑制作用没有影响,证明跨膜电位的改变不能引起这种作用。苯乙二醛对所研究的Na +梯度(1-100 mM)没有离子作用。 Na +流出也不受苯乙二醛处理的影响。 Na +,harmaline和amiloride在保护苯乙二醛抑制方面无效,表明修饰的位点不是Na +结合位点。这些结果表明高反应性精氨酸残基参与磷酸盐,葡萄糖和丙氨酸的吸收。

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