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Cyclization strategies of meditopes: affinity and diffraction studies of meditope-Fab complexes

机译:米皮比的环化策略:Meditope-Fab络合物的亲和力和衍射研究

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摘要

Recently, a unique binding site for a cyclic 12-residue peptide was discovered within a cavity formed by the light and heavy chains of the cetuximab Fab domain. In order to better understand the interactions that drive this unique complex, a number of variants including the residues within the meditope peptide and the antibody, as well as the cyclization region of the meditope peptide, were created. Here, multiple crystal structures of meditope peptides incorporating different cyclization strategies bound to the central cavity of the cetuximab Fab domain are presented. The affinity of each cyclic derivative for the Fab was determined by surface plasmon resonance and correlated to structural differences. Overall, it was observed that the disulfide bond used to cyclize the peptide favorably packs against a hydrophobic 'pocket' and that amidation and acetylation of the original disulfide meditope increased the overall affinity similar to 2.3-fold. Conversely, replacing the terminal cysteines with serines and thus creating a linear peptide reduced the affinity over 50-fold, with much of this difference being reflected in a decrease in the on-rate. Other cyclization methods, including the formation of a lactam, reduced the affinity but not to the extent of the linear peptide. Collectively, the structural and kinetic data presented here indicate that small perturbations introduced by different cyclization strategies can significantly affect the affinity of the meditope-Fab complex.
机译:最近,在由香曲霉属Fab结构域的轻质和重链形成的腔内发现了环状12-残基肽的独特结合位点。为了更好地理解驱动这种独特的复合物的相互作用,产生包括肽肽和抗体内残留物的许多变体以及抗体的残留物,以及蛋白酶肽的环化区域。这里,提出了一种包含与西列蛋白结构域的中心腔结合的不同环化策略的Meditope肽的多晶硅结构。通过表面等离子体共振确定每个环状衍生物对Fab的亲和力,并与结构差异相关。总体而言,观察到用于将肽环束缚的二硫键有利地堆叠疏水性的“口袋”,并且原始二硫化酶的酰胺化和乙酰化增加了与2.3倍相似的总亲和力。相反,用丝氨酸替换末端半胱氨酸,从而产生线性肽在50倍上降低了相比之下的亲和力,其中大部分差异在降低率的降低中。其他环化方法,包括内酰胺的形成,降低了亲和力,但不是线性肽的程度。本文呈现的结构和动力学数据表明,不同环化策略引入的小扰动可以显着影响Meditope-Fab络合物的亲和力。

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