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NMR structural studies of the human protein DEK.

机译:人类蛋白质DEK的NMR结构研究。

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摘要

The chromatin-associated human DEK protein was first identified as a fusion protein in patients with acute myeloid leukemia and has since been implicated in many diseases, but as yet no clear biochemical function has been elucidated. A structural biology approach was taken to characterize the biochemical properties of DEK with the goal of providing insight into its cellular role(s).; Solution NMR was used to characterize the structural, dynamics and DNA binding properties of human DEK. Through an iterative process of production and study of fragments of DEK, starting from an inspection of the primary sequence of the protein, it was discovered that DEK contains two domains with well-defined secondary structure, an N-terminal domain (DEK78--187) and a C-terminal domain (DEK309--375). The three-dimensional structures for these two domains were determined using triple resonance experiments, and HSQC chemical shift mapping was used to explore their DNA binding characteristics.; In the entire 375 amino-acids of the DEK protein, only one short sequence (35 residues) located in the N-terminal domain contains sequence homology to other known proteins: the putative DNA-binding motif, SAP. This domain (DEK78--187) consists of 5 alpha-helices arranged as two helix-extended loop-helix (HEH) motifs facing each other, one HEH being the SAP motif, the other was found to contain a second DNA binding site.; The C-terminal domain is known to be the antigenic fragment in juvenile rheumatoid arthritis and can complement the phenotype of cells derived from ataxia-telangiectasia patients. This domain (DEK309--375) was determined to contain a 3 alpha-helix bundle with a right-handed twist. This fold is reminiscent of the winged helix fold of DNA binding proteins. DNA-binding studies indicated that this domain binds to double-stranded DNA using the second helix of the bundle.; Like the primary sequence, the tertiary structures of the domains of DEK are themselves relatively unique in biology. Database searches discovered only protein structures with slight similarity---all DNA-binding protein domains. Additionally, the DNA-binding studies indicated that the N-terminal domain, DEK78--187, has a novel DNA-binding mechanism responsible for the DNA supercoiling activity of wild-type DEK.
机译:染色质相关的人DEK蛋白首先被鉴定为急性髓细胞性白血病患者的融合蛋白,此后与许多疾病有关,但至今仍未阐明明确的生化功能。采取结构生物学方法表征DEK的生化特性,目的是深入了解其细胞作用。溶液NMR用于表征人DEK的结构,动力学和DNA结合特性。通过对DEK片段进行生产和研究的迭代过程,从检查蛋白质的一级序列开始,发现DEK包含两个结构良好的二级结构域,即N末端结构域(DEK78--187 )和C末端域(DEK309--375)。使用三重共振实验确定了这两个结构域的三维结构,并使用HSQC化学位移图谱研究了它们的DNA结合特性。在DEK蛋白的全部375个氨基酸中,只有一个位于N端结构域的短序列(35个残基)与其他已知蛋白具有相同的序列同源性:推定的DNA结合基序SAP。该结构域(DEK78--187)由5个α-螺旋组成,排列成两个彼此面对的螺旋延伸的环-螺旋(HEH)基序,一个HEH为SAP基序,另一个被发现包含第二个DNA结合位点。 ;已知C末端结构域是青少年类风湿性关节炎的抗原片段,并且可以补充共济失调毛细血管扩张症患者的细胞表型。确定该域(DEK309--375)包含3个带有右旋扭曲的α-螺旋束。该折叠使人联想到DNA结合蛋白的翼状螺旋折叠。 DNA结合研究表明,该结构域使用束的第二个螺旋与双链DNA结合。像一级序列一样,DEK结构域的三级结构本身在生物学上相对独特。数据库搜索仅发现具有微小相似性的蛋白质结构-所有与DNA结合的蛋白质结构域。此外,DNA结合研究表明N末端结构域DEK78--187具有负责野生型DEK DNA超螺旋活性的新型DNA结合机制。

著录项

  • 作者

    Devany, Matthew.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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