首页> 外文学位 >Mutagenese semi-aleatoire au site actif de la DHFR humaine: Creation et caracterisation de variantes hautement resistantes au MTX.
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Mutagenese semi-aleatoire au site actif de la DHFR humaine: Creation et caracterisation de variantes hautement resistantes au MTX.

机译:人类DHFR活性位点的半随机诱变:高度抗MTX的变体的创建和表征。

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摘要

Human dihydrofolate reductase (hDHFR) is an enzyme that is essential to cell proliferation. It reduces dihydrofolate to tetrahydrofolate, an important cofactor involved in purine and thymidylate biosynthesis. hDHFR is a choice target for chemotherapeutic drugs like methotrexate (MTX), which specifically inhibits the enzyme, stopping cell proliferation and leading to cellular death. MTX is used for the treatment of many proliferative diseases, including cancers. Widespread use of MTX has lead to the development of resistance mechanisms appear which impair treatment efficiency. The present work focuses on a mechanism of resistance, namely mutations in hDHFR that reduce its affinity for MTX, to better understand the underlying mechanisms of inhibitor recognition at the active site of the enzyme. In parallel, we aim at identifying the most MTX-resistant variants to offer novel selectable markers for particular cell culture systems, such as hematopoietic cell culture, which offer important perspectives for cellular therapy.;Overall, our work contributes to the better understanding of enzyme-inhibitor interactions, which could provide new insights into the development of more efficient clinical therapies. In addition, this work has yielded novel drug-resistance genes useful as selectable markers for cellular biology.;Keywords. human dihydrofolate reductase, enzyme catalysis, inhibition, folate metabolism, combinatorial mutagenesis, antifolate resistance, methotrexate, selectable markers, hematopoietic cells, X-ray crystallography.;To study the role of different regions of the hDHFR active site, and to verify if a correlation exists between mutations in these regions and increased resistance to MTX, a combinatorial strategy was developed enabling the creation of several hDHFR variant libraries at active site residues located in proximity to bound MTX. The libraries were selected in vivo in a bacterial system using culture media containing high concentration of the inhibitor. One library in particular, hDHFR 31/34/35, yielded a considerable number of highly MTX-resistant combinatorial hDHFR variants. The most interesting candidates were tested for their potential as selectable markers in various cell lines, including transduced hematopoietic cells. Complete protection from MTX-cytotoxicity was obtained for these cells following infection with the combinatorial variants. To better understand the molecular causes of MTX resistance, resolution of the crystal structures of variant proteins in presence of MTX was attempted. Resolution of the F31R/Q35E double variant revealed that the resistance phenotype was related to important differences in the active site relative to WT, possibly attributable to a dynamic motion effect. A more general comprehension of antifolate recognition and resistance was achieved by sequence and structural comparison of antifolate-resistant DHFR variants from different species.
机译:人二氢叶酸还原酶(hDHFR)是细胞增殖必不可少的酶。它将二氢叶酸还原为四氢叶酸,这是嘌呤和胸苷酸生物合成中的重要辅助因子。 hDHFR是甲氨蝶呤(MTX)等化学治疗药物的选择目标,甲氨蝶呤(MTX)特异地抑制该酶,阻止细胞增殖并导致细胞死亡。 MTX用于治疗许多增生性疾病,包括癌症。 MTX的广泛使用已导致耐药机制的出现,这削弱了治疗效率。目前的工作集中在抗性机制上,即hDHFR中的突变会降低其对MTX的亲和力,以更好地理解酶活性位点上抑制剂识别的潜在机制。同时,我们旨在鉴定最具MTX抗药性的变体,为特定的细胞培养系统(例如造血细胞培养)提供新颖的选择标记,这些标记为细胞治疗提供了重要的视角。总体而言,我们的工作有助于更好地了解酶-抑制剂相互作用,可以为开发更有效的临床疗法提供新见解。此外,这项工作还产生了新的耐药基因,可用作细胞生物学的选择性标记。人类二氢叶酸还原酶,酶催化,抑制作用,叶酸代谢,组合诱变,抗叶酸,氨甲蝶呤,选择标记,造血细胞,X射线晶体学;研究hDHFR活性位点不同区域的作用,并验证是否这些区域中的突变与对MTX的抗性增加之间存在相关性,因此开发了一种组合策略,可在靠近结合MTX的活性位点残基处创建多个hDHFR变异文库。使用含有高浓度抑制剂的培养基在细菌系统中在体内选择文库。一个文库,特别是hDHFR 31/34/35,产生了许多高度抗MTX的组合hDHFR变体。测试了最有趣的候选物在各种细胞系(包括转导的造血细胞)中作为选择标记的潜力。用组合变体感染后,这些细胞获得了不受MTX细胞毒性的完全保护。为了更好地理解MTX抗性的分子原因,尝试了在MTX存在下解析变体蛋白的晶体结构。 F31R / Q35E双重变体的分离显示,抗性表型与活性位点相对于野生型的重要差异有关,这可能归因于动态运动效应。通过对来自不同物种的抗叶酸的DHFR变体进行序列和结构比较,可以更全面地了解抗叶酸的识别和抗性。

著录项

  • 作者

    Volpato, Jordan.;

  • 作者单位

    Universite de Montreal (Canada).;

  • 授予单位 Universite de Montreal (Canada).;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 320 p.
  • 总页数 320
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

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