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Copper at the interface of chemistry and biology: New insights into hCtr1 function and the role of histidine in human cellular copper acquisition.

机译:化学和生物学界的铜:hCtr1功能和组氨酸在人类细胞铜摄取中的作用的新见解。

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摘要

Mechanisms of copper homeostasis are of great interest partly due to their connection to debilitating genetic and neurological disorders. The family of high-affinity copper transporters (Ctr) is responsible for extracellular copper acquisition and internalization in yeast, plants, and mammals, including human. The extracellular domain of the human high-affinity copper transporter (hCtr1) contains essential Cubinding methionine-rich MXXM and MXM (Mets) motifs that are important for copper acquisition and transport. The hCtr1 extracellular domain also contains potential copper binding histidine (His) clusters, including a high-affinity Cu2+ ATCUN site. As of yet, extracellular His clusters have no established significance for hCtr1 function. We have made model peptides based on the extracellular copper acquisition domain of hCtr1 that is rich in His residues and Mets motifs. The peptides' Cu + and Cu2+ binding properties have been characterized by UV-Vis and mass spectrometry. Our findings have been extended to a mouse cell model and we show that His residues are important for hCtr1 function likely because of their contribution to strong copper-binding sites in the hCtr1 extracellular domain responsible for copper acquisition.;Copper's pro-oxidant property is also medicinally promising if it can be harnessed to induce oxidative stress as a cancer chemotherapy strategy. Our lab has designed a photocleavable caged copper complex that can selectively release redoxactive copper in response to light. The thermodynamic copper binding properties of these potential chemotherapeutics have been characterized.
机译:铜稳态机制引起人们的极大兴趣,部分原因是它们与使遗传和神经系统疾病衰弱有关。高亲和力铜转运蛋白(Ctr)家族负责酵母,植物和哺乳动物(包括人类)中细胞外铜的获取和内在化。人类高亲和力铜转运蛋白(hCtr1)的胞外域包含必需的富含Cu甲硫氨酸的MXXM和MXM(Mets)基序,这对于铜的获取和运输很重要。 hCtr1胞外域还包含潜在的铜结合组氨酸(His)簇,包括一个高亲和力的Cu2 + ATCUN位点。迄今为止,细胞外的His簇对于hCtr1功能还没有确定的意义。我们已经基于hCtr1的胞外铜获得结构域制作了模型肽,该结构域富含His残基和Mets图案。肽的Cu +和Cu2 +结合特性已通过UV-Vis和质谱法进行了表征。我们的发现已扩展到小鼠细胞模型,我们发现他的残基对于hCtr1功能很重要,可能是因为它们对负责铜捕获的hCtr1细胞外域中的强铜结合位点做出了贡献。铜的促氧化剂特性也是如果可以利用它来诱导氧化应激作为癌症化疗策略,则在医学上很有希望。我们的实验室设计了一种可光裂解的笼状铜配合物,该配合物可以根据光选择性释放氧化还原铜。这些潜在的化学治疗剂的热力学铜结合特性已被表征。

著录项

  • 作者

    Haas, Kathryn.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Chemistry Biochemistry.;Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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