通过选择性半胱氨酸-丝氨酸突变,设计吲哚胺2,3-双加氧酶免疫疗法。

IF 3.2 3区 工程技术 Q2 CHEMISTRY, PHYSICAL
Jennifer A Simonovich, Arun Wanchoo, Ryan A Clark, Junha Park, Ayumi Shigemoto, Benjamin G Keselowsky, Gregory A Hudalla
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引用次数: 0

摘要

吲哚胺2,3-双加氧酶是一种免疫调节酶,当外源性递送作为蛋白质治疗时显示出巨大的前景。然而,IDO活性受到复杂的氧化还原控制,部分由其初级序列中的多个半胱氨酸残基介导。我们已经鉴定了三种IDO突变体,其中溶剂可溶半胱氨酸残基突变为化学相似的丝氨酸残基,“IDOC4S4”具有C112S, C159S, C206S和C308S突变,“IDOC5S3”具有C112S, C159S和C308S突变,基于先前的报道,C206是催化功能所必需的,而IDOC0S8中所有半胱氨酸残基都突变为丝氨酸。与野生型IDO相比,IDOC0S8表达量低,活性低于1%。相比之下,IDOC4S4和IDOC5S3表现出强大的酶活性,尽管IDOC5S3的最大V值比野生型和IDOC4S4慢。计算预测和实验测量表明,野生型IDO和IDOC4S4具有高度的结构相似性,只是IDOC5S3的α-螺旋含量有细微的扰动。预计IDOC0S8的结构与野生型IDO有显著差异。随着时间的推移,IDOC4S4和IDOC5S3在生理、环境和降低的温度下比野生型IDO更稳定,可能是由于突变型IDO形式的氧化减少。基于IDOC4S4增加的vmax和强大的热稳定性,我们将其与锚定片段集素3融合,以评估其在银屑病小鼠模型中的有效性。与野生型ido -半乳糖凝集素-3融合相比,idoc4s4 -半乳糖凝集素-3融合降低了疾病的发生率和严重程度。当与ysl - ala IDO突变体的历史数据进行比较时,本研究强调了根据等构和同构形状的相似性采用氨基酸替代来推进IDO作为免疫调节治疗的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering an indoleamine 2,3-dioxygenase immunotherapy via selective cysteine-to-serine mutations.

Indoleamine 2,3-dioxygenase is an immunomodulatory enzyme that shows great promise when delivered exogenously as a protein therapeutic. However, IDO activity is under complex redox control, mediated in part by multiple cysteine residues within its primary sequence. We have characterized three IDO mutants in which solvent-accessible cysteine residues were mutated to chemically-similar serine residues, "IDOC4S4" with C112S, C159S, C206S, and C308S mutations and "IDOC5S3" with C112S, C159S, and C308S mutations based on prior reports that C206 is necessary for catalytic function, and IDOC0S8, in which all cysteine residues were mutated to serines. IDOC0S8 was expressed in poor yield and demonstrated less than 1% activity when compared to wild-type IDO. In contrast, IDOC4S4 and IDOC5S3 demonstrated robust enzymatic activity, though IDOC5S3 had a slower V max than wild-type and IDOC4S4. Computational predictions and experimental measurements suggested a high degree of structural similarity between the wild-type IDO and IDOC4S4, with subtle perturbation of α-helical content for IDOC5S3. The structure of IDOC0S8 was predicted to be significantly different than that of wild-type IDO. IDOC4S4 and IDOC5S3 were more stable than wild-type IDO over time at physiological, ambient, and reduced temperatures, likely due to diminished oxidation of the mutant IDO forms. Based on the increased V max and robust thermal stability of IDOC4S4, we fused it to the anchoring moiety galectin 3, to evaluate its effectiveness in a mouse model of psoriasis. The IDOC4S4-galectin-3 fusion blunted the rate and severity of disease as compared to wild-type IDO-galectin-3 fusion. When compared to historical data with Cys-Ala IDO mutants, this study highlights the importance of employing amino acid substitution according to similarity in isosteric and isostructural shape to advance IDO as an immunomodulatory therapeutic.

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来源期刊
Molecular Systems Design & Engineering
Molecular Systems Design & Engineering Engineering-Biomedical Engineering
CiteScore
6.40
自引率
2.80%
发文量
144
期刊介绍: Molecular Systems Design & Engineering provides a hub for cutting-edge research into how understanding of molecular properties, behaviour and interactions can be used to design and assemble better materials, systems, and processes to achieve specific functions. These may have applications of technological significance and help address global challenges.
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