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首页> 外文期刊>Biochemistry >Thermodynamic binding parameters of individual epitopes of multivalent carbohydrates to concanavalin a as determined by 'reverse' isothermal titration microcalorimetry
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Thermodynamic binding parameters of individual epitopes of multivalent carbohydrates to concanavalin a as determined by 'reverse' isothermal titration microcalorimetry

机译:多价碳水化合物的单个表位与伴刀豆球蛋白a的热力学结合参数,通过“反向”等温滴定微量热法测定

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摘要

The preceding paper [Dam, T.K., Roy, R., Page, D., and Brewer, C.F.(2002) Biochemistry 41, 1351-1358] demonstrated that Hill plots of isothermal titration microcalorimetry (ITC) data for the binding of di-, tri-, and tetravalent carbohydrate analogues possessing terminal 3,6-di-O-(#alpha#-D-mannopyranosyl)-#alpha#-D-mannopyranoside residues to the lectin concanavalin A (ConA) show increasing negative cooperativity upon binding of the analogues to the lectin. The present study demonstrates "reverse" ITC experiments in which the lectin is titrated into solutions of di- and trivalent analogues. The results provide direct determinations of the thermodynamics of binding of ConA to the individual epitopes of the two multivalent analogues. The n values (number of binding sites per carbohydrate molecule) derived from reverse ITC demonstrate two functional binding epitopes on both the di- and trivalent analogues, confirming previous "normal" ITC results with the two carbohydrates [Dam, T.K., Roy, R., Das, S.K.,Oscarson, S., and Brewer, C.F, (2000) J. Biol. Chem. 275, 14223-14230]. The reverse ITC measurements show an 18-fold greater microscopic affinity constant of ConA for the first epitope of the divalent analogue versus its second epitope and a 53-fold greater microscopic affinity constant of ConA binding to the first epitope of the trivalent analogue versus its second epitope. The data also demonstrate that the microscopic enthalpies of binding of the two epitopes on the di- and trivalent analogues are essentially the same and that differences in the microscopic K_a values of the epitopes are due to their different microscopic entropies of binding values. These findings are consistent with the increasing negative Hill coefficients of these analogues binding to ConA in the previous paper.
机译:先前的论文[Dam,TK,Roy,R.,Page,D.,and Brewer,CF(2002)Biochemistry 41,1351-1358]证明了等温滴定微量热法(ITC)数据的希尔图可用于结合Di- ,三价和四价碳水化合物类似物在凝集素伴刀豆球蛋白A(ConA)上具有末端3,6-二-O-(#alpha#-D-甘露吡喃糖基)-#alpha#-D-甘露吡喃糖苷残基显示出增加的负协同性凝集素的类似物。本研究证明了“反向” ITC实验,其中凝集素被滴定成二价和三价类似物的溶液。结果直接确定了ConA与两个多价类似物的各个表位结合的热力学。衍生自反向ITC的n值(每个碳水化合物分子的结合位点数)在二价和三价类似物上均显示出两个功能性结合表位,从而证实了先前使用两种碳水化合物的“正常” ITC结果[Dam,TK,Roy,R。 ,Das,SK,Oscarson,S。,和Brewer,CF,(2000)J.Biol.Chem.Soc。,(2000)J.Biol。化学275,14223-14230]。反向ITC测量显示,与二价类似物的第二个表位相比,ConA对第二个表位的微观亲和常数大18倍,与三价类似物的第一个表位结合的ConA微观亲和常数大53倍。表位。数据还表明,在二价和三价类似物上的两个表位结合的微观焓基本相同,并且表位的微观K_a值的差异是由于它们的结合值的微观熵不同。这些发现与先前论文中与ConA结合的类似物的负希尔系数的增加相一致。

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