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首页> 外文期刊>Journal of Molecular Biology >Design of an optimized scaffold for affibody molecules.
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Design of an optimized scaffold for affibody molecules.

机译:亲和分子优化支架的设计。

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Affibody molecules are non-immunoglobulin-derived affinity proteins based on a three-helical bundle protein domain. Here, we describe the design process of an optimized Affibody molecule scaffold with improved properties and a surface distinctly different from that of the parental scaffold. The improvement was achieved by applying an iterative process of amino acid substitutions in the context of the human epidermal growth factor receptor 2 (HER2)-specific Affibody molecule Z(HER2:342). Replacements in the N-terminal region, loop 1, helix 2 and helix 3 were guided by extensive structural modeling using the available structures of the parent Z domain and Affibody molecules. The effect of several single substitutions was analyzed followed by combination of up to 11 different substitutions. The two amino acid substitutions N23T and S33K accounted for the most dramatic improvements, including increased thermal stability with elevated melting temperatures of up to +12 degrees C. The optimized scaffold contains 11 amino acid substitutions in the nonbinding surface and is characterized by improved thermal and chemical stability, as well as increased hydrophilicity, and enables generation of identical Affibody molecules both by chemical peptide synthesis and by recombinant bacterial expression. A HER2-specific Affibody tracer, [MMA-DOTA-Cys61]-Z(HER2:2891)-Cys (ABY-025), was produced by conjugating MMA-DOTA (maleimide-monoamide-1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid) to the peptide produced either chemically or in Escherichia coli. ABY-025 showed high affinity and specificity for HER2 (equilibrium dissociation constant, K(D), of 76 pM) and detected HER2 in tissue sections of SKOV-3 xenograft and human breast tumors. The HER2-binding capacity was fully retained after three cycles of heating to 90 degrees C followed by cooling to room temperature. Furthermore, the binding surfaces of five Affibody molecules targeting other proteins (tumor necrosis factor alpha, insulin, Taq polymerase, epidermal growth factor receptor or platelet-derived growth factor receptor beta) were grafted onto the optimized scaffold, resulting in molecules with improved thermal stability and a more hydrophilic nonbinding surface.
机译:Affibody分子是基于三螺旋束蛋白结构域的非免疫球蛋白衍生的亲和蛋白。在这里,我们描述了优化的Affibody分子支架的设计过程,该支架具有改进的性能,并且表面明显不同于亲本支架。通过在人表皮生长因子受体2(HER2)特异性Affibody分子Z(HER2:342)的背景下应用氨基酸取代的迭代过程来实现这种改进。使用亲本Z结构域和Affibody分子的可用结构,通过广泛的结构建模指导N末端区域,环1,螺旋2和螺旋3的置换。分析了几个单取代的作用,然后组合了多达11个不同的取代。两个氨基酸取代N23T和S33K表现出最显着的改善,包括提高的热稳定性以及高达+12℃的升高的熔融温度。优化的支架在非结合表面包含11个氨基酸取代,并且具有改善的热稳定性和热稳定性。化学稳定性以及增加的亲水性,并能够通过化学肽合成和重组细菌表达产生相同的Affibody分子。通过共轭MMA-DOTA(马来酰亚胺-单酰胺-1,4,7,10-四氮杂环十二烷)生产HER2特异性Affibody示踪剂[MMA-DOTA-Cys61] -Z(HER2:2891)-Cys(ABY-025) -1,4,7,10-四乙酸)生成化学或在大肠杆菌中产生的肽。 ABY-025对HER2表现出高亲和力和特异性(平衡解离常数,K(D)为76 pM),并在SKOV-3异种移植和人乳腺肿瘤的组织切片中检测到HER2。加热至90摄氏度,然后冷却至室温的三个循环后,HER2结合能力得以完全保留。此外,将靶向其他蛋白质(肿瘤坏死因子α,胰岛素,Taq聚合酶,表皮生长因子受体或血小板衍生的生长因子受体β)的五个Affibody分子的结合表面移植到优化的支架上,从而使分子具有改善的热稳定性和更亲水的非结合表面。

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