On the nature of the multivalency effect: A thermodynamic model

被引:382
作者
Kitov, PI [1 ]
Bundle, DR [1 ]
机构
[1] Univ Alberta, Dept Chem, Edmonton, AB T6G 2G2, Canada
关键词
D O I
10.1021/ja038223n
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A quantitative model is proposed for the analysis of the thermodynamic parameters of multivalent interactions in dilute solutions or with immobilized multimeric receptor. The model takes into account all bound species and describes multivalent binding via two microscopic binding energies corresponding to inter- and intramolecular interactions (DeltaGdegrees(inter) and DeltaGdegrees(intra)), the relative contributions of which depend on the distribution of complexes with different numbers of occupied binding sites. The third component of the overall free energy, which we call the "avidity entropy" term, is a function of the degeneracy of bound states, Omega(i), which is calculated on the basis of the topology of interaction and the distribution of all bound species. This term grows rapidly with the number of receptor sites and ligand multivalency, it always favors binding, and explains why multivalency can overcome the loss of conformational entropy when ligands displayed at the ends of long tethers are bound. The microscopic parameters DeltaGdegrees(inter) and DeltadegreesG(intra) may be determined from the observed binding energies for a set of oligovalent ligands by nonlinear fitting with the theoretical model. Here binding data obtained from two series of oligovalent carbohydrate inhibitors for Shiga-like toxins were used to verify the theory. The decavalent and octavalent inhibitors exhibit subnanomolar activity and are the most active soluble inhibitors yet seen that block Shiga-like toxin binding to its native receptor. The theory developed here in conjunction with our protocol for the optimization of tether length provides a predictive approach to design and maximize the avidity of multivalent ligands.
引用
收藏
页码:16271 / 16284
页数:14
相关论文
共 41 条
[1]   Synergistic formation of soluble lectin clusters by a templated multivalent saccharide ligand [J].
Burke, SD ;
Zhao, Q ;
Schuster, MC ;
Kiessling, LL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (18) :4518-4519
[2]  
BURKHALTER NF, 2000, PROTEIN CARBOHYDRATE, P865
[3]  
Chakrabarti C., 2000, International Journal of Mathematics and Mathematical Sciences, V23, P243, DOI [10.1155/S0161171200000375, DOI 10.1155/S0161171200000375]
[4]   QUANTITATIVE ASPECTS OF HORMONE-RECEPTOR INTERACTIONS OF HIGH AFFINITY - EFFECT OF RECEPTOR CONCENTRATION AND MEASUREMENT OF DISSOCIATION-CONSTANTS OF LABELED AND UNLABELED HORMONES [J].
CHANG, KJ ;
JACOBS, S ;
CUATRECASAS, P .
BIOCHIMICA ET BIOPHYSICA ACTA, 1975, 406 (02) :294-303
[5]   A comparison of biological and calorimetric analyses of multivalent glycodendrimer ligands for concanavalin A [J].
Corbell, JB ;
Lundquist, JJ ;
Toone, EJ .
TETRAHEDRON-ASYMMETRY, 2000, 11 (01) :95-111
[6]  
Dam TK, 2001, GLYCOBIOLOGY, V11, P925
[7]   Binding of multivalent carbohydrates to concanavalin A and Dioclea grandiflora lectin -: Thermodynamic analysis of the "multivalency effect" [J].
Dam, TK ;
Roy, R ;
Das, SK ;
Oscarson, S ;
Brewer, CF .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (19) :14223-14230
[8]  
DELL A, 2000, STRUCTURAL ANAL OLIG, P865
[9]   On the meaning of affinity: Cluster glycoside effects and concanavalin A [J].
Dimick, SM ;
Powell, SC ;
McMahon, SA ;
Moothoo, DN ;
Naismith, JH ;
Toone, EJ .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1999, 121 (44) :10286-10296
[10]   SOLID-PHASE ANTIGEN DENSITY AND AVIDITY OF ANTIBODIES DETECTED IN ANTI-GROUP B STREPTOCOCCAL TYPE-III IGG ENZYME IMMUNOASSAYS [J].
FELDMAN, RG ;
HAMEL, ME ;
BREUKELS, MA ;
CONCEPCION, NF ;
ANTHONY, BF .
JOURNAL OF IMMUNOLOGICAL METHODS, 1994, 170 (01) :37-45