Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, 3012 Bern, Switzerland.
Chembiochem. 2010 Feb 15;11(3):358-65. doi: 10.1002/cbic.200900657.
The third-generation peptide-dendrimer B1 (AcES)8(BEA)4(K-Amb-Y)2BCD-NH2 (B=branching (S)-2,3-diaminopropanoic acid, K=branching lysine, Amb=4-aminomethyl-benzoic acid) is the first synthetic model for cobalamin-binding proteins and binds cobalamin strongly (K(a)=5.0 x 10(6) M(-1)) and rapidly (k(2)=346 M(-1) s(-1)) by coordination of cobalt to the cysteine residue at the dendrimer core. A structure-activity relationship study is reported concerning the role of negative charges in binding. Substituting glutamates (E) for glutamines (Q) in the outer branches of B1 to form N3 (AcQS)8(BQA)4(B-Amb-Y)(2)BCD-NH2 leads to stronger (K(a)=12.0 x 10(6) M(-1)) but slower (k(2)=67 M(-1) s(-1)) cobalamin binding. CD and FTIR spectra show that the dendrimers and their cobalamin complexes exist as random-coil structures without aggregation in solution. The hydrodynamic radii of the dendrimers determined by diffusion NMR either remains constant or slightly decreases upon binding to cobalamin; this indicates the formation of compact, presumably hydrophobically collapsed complexes.
第三代肽-树枝状大分子 B1(AcES)8(BEA)4(K-Amb-Y)2BCD-NH2(B=支化(S)-2,3-二氨基丙酸,K=支化赖氨酸,Amb=4-氨基甲基苯甲酸)是第一个钴胺素结合蛋白的合成模型,通过钴与树枝状大分子核心的半胱氨酸残基配位,强烈且快速(k2=346 M-1 s-1)地结合钴胺素(Ka=5.0 x 106 M-1)。本文报道了关于结合中负电荷作用的构效关系研究。通过在外支上用谷氨酸(E)取代谷氨酰胺(Q)形成 N3(AcQS)8(BQA)4(B-Amb-Y)(2)BCD-NH2,导致更强的(Ka=12.0 x 106 M-1)但更慢的(k2=67 M-1 s-1)的钴胺素结合。CD 和 FTIR 光谱表明,树枝状大分子及其与钴胺素的复合物在溶液中以无聚集的无规卷曲结构存在。扩散 NMR 测定的树枝状大分子的流体力学半径在与钴胺素结合时保持不变或略有减小;这表明形成了紧凑的、可能是疏水性塌陷的复合物。