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Selenoprotein W: Purification and characterization of its interaction with calmodulin.

机译:硒蛋白W:其与钙调蛋白相互作用的纯化和表征。

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摘要

Selenoprotein W (SeW) is a protein whose function is unknown, but potentially plays a vital role in calcium metabolism, as an indirect link has been established with white muscle disease (WMD). White muscle disease occurs in selenium deficient animals, and is characterized by the precipitation of calcium in muscle, leading to paralysis and death. This thesis details efforts to purify and characterize SeW. This includes investigations into calcium binding, phosphorylation, and interaction with calmodulin (CaM). The main portion of the thesis consists of two manuscripts, the first dealing with the purification and production of SeW with and without bound glutathione, the second manuscript addresses SeW-CaM interaction. Supplemental material as well as the results of calcium binding studies and phosphorylation studies, are located in the appendices. Abstracts from the two manuscripts, follow.; Matrix-assisted laser desorption/ionization mass spectrometry (MALDI MS) and electrospray ionization mass spectrometry (ESI MS) analysis of a 6x His-tagged recombinant form of rat mutant selenoprotein W (RMSW) reveals that aerobic growth conditions primarily produce a form of RMSW without bound glutathione (10305 Da) whereas anaerobic conditions produce a glutathione-bound (305 Da) form (10610 Da). Purification of RMSW was achieved with a procedure employing acetone precipitation and DEAE-cellulose chromatography, in addition to Ni-NTA agarose chromatography. Additional steps, including polyvalent metal ion binding (PMIB) resin chromatography and CM-cellulose chromatography, were necessary after elution from the Ni-NTA agarose column, in order to maintain solubility of the purified protein.; Experiments applying partially purified extracts containing either rat mutant selenoprotein W (RMSW, Selenocysteine → cysteine, His6 tag) or native rabbit selenoprotein W (SeW) to a calmodulin-sepharose column revealed that SeW interacts with calmodulin in a calcium dependent manner.; Fluorescence polarization experiments with fluorescently labeled calmodulin and purified RMSW with and without bound glutathione revealed a Kd of 1.3 +/- .1 x 10-6M for both forms of the protein. Competitive binding assays with myosin light chain kinase (MLCK) and fluorescently labeled calmodulin were performed for three peptide sequences (Nterm: GYKPKYLQLKEKL-NH2:, Rmid: VTVAGKLVHSKKRG-NH2, and Cterm: KFRKLVTAIKAALAQ-NH2) which occur within proposed calmodulin binding sequences in rat SeW. The concentration of each peptide at which half-displacement of MLCK was achieved ([P]50) was determined to be 5.5 nM, 6.3 nM, and 1.60 nM respectively. These values were used to estimate the dissociation constant of the peptide-calmodulin complex (Kp). The Kp values for Nterm and Rmid were determined to be 1 nM, whereas the K p for Cterm was determined to be 18 nM. In addition, during a preliminary test for specifity, a 100 fold excess of beef cardiac troponin C, a protein related to calmodulin, was unable to outcompete calmodulin for RMSW.
机译:硒蛋白W(SeW)是一种功能未知的蛋白,但由于已经与白肌病(WMD)建立了间接联系,因此可能在钙代谢中起着至关重要的作用。白肌病发生在缺硒动物中,其特征是钙在肌肉中的沉淀,导致麻痹和死亡。本文详细介绍了净化和表征SeW的工作。这包括对钙结合,磷酸化以及与钙调蛋白(CaM)相互作用的研究。论文的主要部分由两篇论文组成,第一篇涉及有和没有结合谷胱甘肽的SeW的纯化和生产,第二篇涉及SeW-CaM相互作用。附录中有补充材料以及钙结合研究和磷酸化研究的结果。摘自这两个手稿的摘要。基质辅助激光解吸/电离质谱(MALDI MS)和电喷雾电离质谱(ESI MS)对大鼠突变型硒蛋白W(RMSW)的6倍组氨酸标签重组形式的分析表明,有氧生长条件主要产生RMSW形式没有结合的谷胱甘肽(10305 Da),而厌氧条件产生结合谷胱甘肽的形式(305 Da)(10610 Da)。除了使用Ni-NTA琼脂糖色谱法外,还采用丙酮沉淀和DEAE-纤维素色谱法对RMSW进行纯化。从Ni-NTA琼脂糖柱洗脱后,还需要其他步骤,包括多价金属离子结合(PMIB)树脂色谱和CM-纤维素色谱,以保持纯化蛋白的溶解度。将含有大鼠突变型硒蛋白W(RMSW,硒代半胱氨酸→半胱氨酸,His6标签)或天然兔硒蛋白W(SeW)的部分纯化的提取物应用于钙调蛋白-琼脂糖柱的实验表明,SeW与钙调蛋白相互作用的方式是钙依赖性。用荧光标记的钙调蛋白和有或没有结合的谷胱甘肽的纯化RMSW进行的荧光偏振实验表明,两种形式的蛋白质的Kd为1.3 +/- .1 x 10-6M。使用肌球蛋白轻链激酶(MLCK)和荧光标记的钙调蛋白对三个肽序列(Nterm:GYKPKYLQLKEKL-NH2:,Rmid:VTVAGKLVHSKKRG-NH2和Cterm:KFRKLVTAIKAALAQ-NH2)进行竞争性结合测定,该序列位于老鼠SEW。确定达到MLCK半位移的每种肽的浓度([P] 50)分别为5.5 nM,6.3 nM和1.60 nM。这些值用于估计肽-钙调蛋白复合物(Kp)的解离常数。 Nterm和Rmid的Kp值确定为<1 nM,而Cterm的Kp被确定为18 nM。此外,在初步的特异性测试中,与钙调蛋白有关的蛋白质牛心肌肌钙蛋白C过量100倍无法与RMSW的钙调蛋白竞争。

著录项

  • 作者

    Bauman, Andrew Thomas.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 172 p.
  • 总页数 172
  • 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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