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Carbohydrate-Mimetic Peptides for Pan Anti-Tumor Responses

机译:糖模拟肽用于泛抗肿瘤反应

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摘要

Molecular mimicry is fundamental to biology and transcends to many disciplines ranging from immune pathology to drug design. Structural characterization of molecular partners has provided insight into the origins and relative importance of complementarity in mimicry. Chemical complementarity is easy to understand; amino acid sequence similarity between peptides, for example, can lead to cross-reactivity triggering similar reactivity from their cognate receptors. However, conformational complementarity is difficult to decipher. Molecular mimicry of carbohydrates by peptides is often considered one of those. Extensive studies of innate and adaptive immune responses suggests the existence of carbohydrate mimicry, but the structural basis for this mimicry yields confounding details; peptides mimicking carbohydrates in some cases fail to exhibit both chemical and conformational mimicry. Deconvolution of these two types of complementarity in mimicry and its relationship to biological function can nevertheless lead to new therapeutics. Here, we discuss our experience examining the immunological aspects and implications of carbohydrate–peptide mimicry. Emphasis is placed on the rationale, the lessons learned from the methodologies to identify mimics, a perspective on the limitations of structural analysis, the biological consequences of mimicking tumor-associated carbohydrate antigens, and the notion of reverse engineering to develop carbohydrate-mimetic peptides in vaccine design strategies to induce responses to glycan antigens expressed on cancer cells.
机译:分子模拟是生物学的基础,并超越了从免疫病理学到药物设计的许多学科。分子伴侣的结构表征提供了对模仿中互补性的起源和相对重要性的认识。化学互补性易于理解;例如,肽之间的氨基酸序列相似性可导致交叉反应,从而触发其同源受体的相似反应性。但是,构象互补性难以破译。肽对碳水化合物的分子模拟通常被认为是其中之一。对先天性和适应性免疫反应的广泛研究表明存在碳水化合物拟态,但这种拟态的结构基础产生了令人困惑的细节。在某些情况下,模仿碳水化合物的肽不能同时显示化学和构象模拟。然而,模仿中这两种类型的互补性的反卷积及其与生物学功能的关系仍可导致新的治疗方法。在这里,我们讨论了检查碳水化合物肽模拟物的免疫学方面和含义的经验。重点放在原理,从识别模拟物的方法学中汲取的教训,结构分析的局限性,模拟与肿瘤相关的碳水化合物抗原的生物学后果的逆向工程以及开发逆向工程以开发碳水化合物模拟肽的概念。疫苗设计策略,以诱导对癌细胞上表达的聚糖抗原的反应。

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