首页> 外文期刊>Hybridoma and hybridomics >Minimal structural elements of an inhibitory anti-ATF1/CREB single-chain antibody fragment (scFv41.4).
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Minimal structural elements of an inhibitory anti-ATF1/CREB single-chain antibody fragment (scFv41.4).

机译:抑制性抗ATF1 / CREB单链抗体片段(scFv41.4)的最小结构元件。

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摘要

Antibody variable domains represent potential structural models for the rational design of therapeutic molecules that bind cellular proteins with high affinity and specificity. The Activating Transcription Factor 1 (ATF1)/Cyclic AMP Response Element Binding Protein (CREB) family of transcription factors are particularly relevant targets due to their strong association with melanoma and clear cell sarcoma. Biochemical and structural investigations were performed to optimize a single-chain antibody fragment (scFv), scFv41.4, that disrupts the binding of ATF1/CREB to cyclic-AMP response elements (CRE) in vitro and inhibits transcriptional activation in cells. Molecular modeling and ligand docking simulations suggested that scFv41.4 could function as a disulfide-deficient single domain scFv. Functional studies verified that deletion of the light chain did not result in reduced inhibitory activity. The isolated heavy chain was predicted to assume a relaxed structural conformation that maintained a functional antigen binding pocket. The minimal structural elements necessary for intracellular function were further analyzed by selective deletion of CDR1 and CDR2. V(H)-CDR1 and V(H)-CDR3 were shown to play a key role in antigen binding activity, but V(H)-CDR2 was dispensable. Thus, scFv41.4 represents a unique molecule with potential for use in the design of peptidomimetic derivatives having therapeutic application to human cancer.
机译:抗体可变域代表用于合理设计以高亲和力和特异性结合细胞蛋白的治疗分子的潜在结构模型。转录因子的激活转录因子1(ATF1)/循环AMP响应元件结合蛋白(CREB)家族是特别相关的靶标,因为它们与黑素瘤和透明细胞肉瘤密切相关。进行了生化和结构研究,以优化单链抗体片段(scFv)scFv41.4,该片段可在体外破坏ATF1 / CREB与环状AMP反应元件(CRE)的结合并抑制细胞中的转录激活。分子建模和配体对接模拟表明,scFv41.4可以充当缺乏二硫键的单结构域scFv。功能研究证实,轻链的缺失不会导致抑制活性降低。预计分离出的重链将呈现保持功能性抗原结合口袋的松弛结构构象。通过选择性删除CDR1和CDR2,进一步分析了细胞内功能所需的最小结构元件。 V(H)-CDR1和V(H)-CDR3已显示在抗原结合活性中起关键作用,但V(H)-CDR2是可有可无的。因此,scFv41.4代表一种独特的分子,具有潜在的潜力,可用于设计对人类癌症具有治疗应用的拟肽衍生物。

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