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两类巯基对红细胞钠/锂逆向转运动力学的修饰

Modification of erythrocyte Na+/Li+ countertransport kinetics by two types of thiol group.

作者信息

Thomas T H, West I C, Wilkinson R

机构信息

Department of Medicine (Nephrology), Freeman Hospital, University of Newcastle-upon-Tyne, UK.

出版信息

Biochim Biophys Acta. 1995 May 4;1235(2):317-22. doi: 10.1016/0005-2736(95)80020-g.

Abstract

Erythrocyte Na+/Li+ countertransport activity is decreased by reagents that react with thiol groups. An understanding of the role of these groups in control of Na+/Li+ countertransport may help to explain its association with disease states. The effect of thiol reactive agents on the kinetic parameters of Na+/Li+ countertransport has not previously been described. In choline medium, N-ethylmaleimide (NEM) and iodoacetamide (IAamide) cause a rapid decrease of about 40% in Km for external sodium (Km(So)) that is complete in 10 s with a much smaller change in Vmax and an increase in the Vmax/Km ratio. In Na medium, NEM and IAamide both cause a rapid decrease in Km(So) and Vmax. With NEM the partial reduction in Vmax is complete in 100s although the NEM is sufficient to reduce Vmax up to 15 min. With IAamide the decrease in Vmax is initially slower but it continues apparently towards complete inhibition. These results indicate at least two types of thiol group controlling Na+/Li+ countertransport kinetics. The type 1 thiol reaction is Na independent and causes an increase in the apparent rate constant for Na association with the unloaded carrier so that Vmax/Km rises and Km(So) decreases. The type 2 thiol reaction is facilitated by Na at the outside ion-binding site and causes a decrease in Vmax, possibly by total blockage of carriers with IAamide but by a different mechanism with NEM such as reduced turnover rate.

摘要

与巯基反应的试剂会降低红细胞钠/锂逆向转运活性。了解这些基团在钠/锂逆向转运控制中的作用可能有助于解释其与疾病状态的关联。巯基反应性试剂对钠/锂逆向转运动力学参数的影响此前尚未见报道。在胆碱培养基中,N-乙基马来酰亚胺(NEM)和碘乙酰胺(IAamide)可使细胞外钠的米氏常数(Km(So))迅速降低约40%,10秒内即可完成,而最大反应速度(Vmax)变化较小,且Vmax/Km比值增加。在钠培养基中,NEM和IAamide均会导致Km(So)和Vmax迅速降低。使用NEM时,Vmax的部分降低在100秒内完成,尽管NEM足以使Vmax降低长达15分钟。使用IAamide时,Vmax的降低最初较慢,但显然会持续直至完全抑制。这些结果表明至少有两种类型的巯基控制着钠/锂逆向转运动力学。第1型巯基反应不依赖于钠,会导致钠与空载载体结合的表观速率常数增加,从而使Vmax/Km升高,Km(So)降低。第2型巯基反应在外部离子结合位点受钠促进,导致Vmax降低,IAamide可能通过完全阻断载体起作用,而NEM则通过不同机制起作用,如降低周转率。

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