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Molecular Recognition between Aβ-Specific Single-Domain Antibody and Aβ Misfolded Aggregates

机译:Aβ特异性单域抗体与Aβ折叠错误的聚集体之间的分子识别

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摘要

Aβ is the toxic amyloid polypeptide responsible for Alzheimer’s disease (AD). Prevention and elimination of the Aβ misfolded aggregates are the promising therapeutic strategies for the AD treatments. Gammabody, the Aβ-Specific Single-domain (VH) antibody, recognizes Aβ aggregates with high affinity and specificity and reduces their toxicities. Employing the molecular dynamics simulations, we studied diverse gammabody-Aβ recognition complexes to get insights into their structural and dynamic properties and gammabody-Aβ recognitions. Among many heterogeneous binding modes, we focused on two gammabody-Aβ recognition scenarios: recognition through Aβ β-sheet backbone and on sidechain surface. We found that the gammabody primarily uses the complementarity-determining region 3 (CDR3) loop with the grafted Aβ sequence to interact with the Aβ fibril, while CDR1/CDR2 loops have very little contact. The gammabody-Aβ complexes with backbone binding mode are more stable, explaining the gammabody’s specificity towards the C-terminal Aβ sequence.
机译:Aβ是负责阿尔茨海默氏病(AD)的有毒淀粉样多肽。预防和消除Aβ错折叠的聚集体是AD治疗的有希望的治疗策略。 Gammabody是Aβ特异性单域(VH)抗体,可以高亲和力和特异性识别Aβ聚集体并降低其毒性。利用分子动力学模拟,我们研究了多种γ-Aβ识别复合物,以了解其结构和动力学性质以及γ-Aβ识别。在许多异质结合模式中,我们重点研究了两种γbody-Aβ识别方案:通过Aββ-sheet骨架和侧链表面的识别。我们发现,γ抗体主要使用具有嫁接的Aβ序列的互补决定区3(CDR3)环与Aβ原纤维相互作用,而CDR1 / CDR2环几乎没有接触。具有骨架结合模式的伽玛抗体-Aβ复合物更稳定,这说明了伽玛抗体对C端Aβ序列的特异性。

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