首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Natural and non-natural amino-acid side-chain substitutions: affinity and diffraction studies of meditope–Fab complexes
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Natural and non-natural amino-acid side-chain substitutions: affinity and diffraction studies of meditope–Fab complexes

机译:天然和非天然氨基酸侧链取代:中间位-Fab复合物的亲和力和衍射研究

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摘要

Herein, multiple crystal structures of meditope peptide derivatives incorporating natural and unnatural amino acids bound to the cetuximab Fab domain are presented. The affinity of each derivative was determined by surface plasmon resonance and correlated to the atomic structure. Overall, it was observed that the hydrophobic residues in the meditope peptide, Phe3, Leu5 and Leu10, could accommodate a number of moderate substitutions, but these invariably reduced the overall affinity and half-life of the interaction. In one case, the substitution of Phe3 by histidine led to a change in the rotamer conformation, in which the imidazole ring flipped to a solvent-exposed position. Based on this observation, Phe3 was substituted by diphenylalanine and it was found that the phenyl rings in this variant mimic the superposition of the Phe3 and His3 structures, producing a moderate increase, of 1.4-fold, in the half-life of the complex. In addition, it was observed that substitution of Leu5 by tyrosine and glutamate strongly reduced the affinity, whereas the substitution of Leu5 by diphenyl­alanine moderately reduced the half-life (by approximately fivefold). Finally, it was observed that substitution of Arg8 and Arg9 by citrulline dramatically reduced the overall affinity, presumably owing to lost electrostatic interactions. Taken together, these studies provide insight into the meditope–cetuximab interaction at the atomic level.
机译:在此,提出了结合有与西妥昔单抗Fab结构域结合的天然和非天然氨基酸的中间位肽衍生物的多个晶体结构。每种衍生物的亲和力由表面等离振子共振确定,并与原子结构相关。总的来说,观察到中间位肽Phe3,Leu5和Leu10中的疏水残基可以容纳许多中度取代基,但这些取代基均会降低相互作用的总体亲和力和半衰期。在一种情况下,Phe3被组氨酸取代导致旋转异构体构象发生变化,其中咪唑环翻转至溶剂暴露位置。基于该观察结果,Phe3被二苯丙氨酸取代,并且发现该变体中的苯环模仿了Phe3和His3结构的叠加,在复合物的半衰期中产生了1.4倍的适度增加。此外,观察到酪氨酸和谷氨酸取代Leu5会大大降低亲和力,而二苯丙氨酸取代Leu5会适度降低半衰期(降低约五倍)。最后,观察到瓜氨酸取代了Arg8和Arg9可能大大降低了整体亲和力,这可能是由于失去了静电相互作用所致。综上所述,这些研究提供了在原子水平上对meditope-cetuximab相互作用的深入了解。

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