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Structure-function studies on calcium transporting proteins within the adductor muscle of the sea scallop.

机译:海扇贝内收肌内钙转运蛋白的结构功能研究。

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摘要

An unusual pattern of Ca2+-dependent tryptic cleavage sites in the cytoplasmic domains of scallop Ca2+-ATPase allowed it to be shown that binding of the phosphate moieties of nucleotides and nucleotide analogues or orthophosphate to the catalytic site of the E 1 enzyme induced a previously undescribed intermediate in which the enzyme is repositioned such that the terminal phosphoryl group of ATP is prepared for transfer to the catalytic site. Covalent phosphorylation of the Ca 2+-ATPase to form E2-P led to increased stabilization of the enzyme against proteolysis by trypsin. Kinetic data from the scallop Ca 2+-ATPase were consistent with the presence of both a low and high affinity ATP binding site.; The cytosolic f loop of the scallop Na+-Ca2+-Exchanger, together with much of the N-terminal transmembrane region, was sequenced by RT-PCR. The scallop exchanger f loop possessed three Protein Kinase A (PK-A) consensus sequences. One of these (K600RGSV) was a plausible candidate for a site phosphorylated by PK-A detected in previous studies on the native scallop exchanger. Regions of the scallop exchanger f loop that correspond closely to previously described 37k Da, 16k Da, and 19k Da tryptic peptides were expressed as fusion proteins. In the 37k Da fusion proteins, there was a significant (∼25%) increase in secondary structure content when Ca2+ were bound, indicating that functional Ca 2+-binding sites were present. The 37k Da fusion protein and the isolated 37k Da peptide could be phosphorylated by PK-A in the presence of EGTA. Site-directed mutagenesis identified Ser603 as the residue in the exchanger portion of the fusion protein that was phosphorylated by PK-A. When PK-A treatment of the isolated 37k Da peptide was carried out in the presence of Ca 2+, no phosphorylation was observed.
机译:扇贝Ca2 + -ATPase胞质结构域中Ca2 +依赖的胰蛋白酶切割位点的异常模式可以显示核苷酸和核苷酸类似物或正磷酸盐的磷酸部分与E 1酶催化位点的结合可诱导先前未描述的中间体,其中酶被重新定位,使得ATP的末端磷酸基团准备转移到催化位点。 Ca 2 + -ATPase的共价磷酸化形成E2-P导致该酶增强抵抗胰蛋白酶水解的稳定性。扇贝Ca 2+ -ATPase的动力学数据与低亲和力和高亲和力的ATP结合位点一致。通过RT-PCR对扇贝Na + -Ca2 +-交换子的胞质f环以及大部分N端跨膜区域进行测序。扇贝交换器f环拥有三个蛋白激酶A(PK-A)共有序列。其中之一(K600RGSV)是在以前的扇贝交换器上进行的先前研究中检测到的被PK-A磷酸化的位点的合理候选者。扇形交换子f环的与先前描述的37k Da,16k Da和19k Da胰蛋白酶肽紧密对应的区域被表达为融合蛋白。在结合了Ca2 +的37k Da融合蛋白中,二级结构的含量显着增加(〜25%),表明存在功能性Ca 2+结合位点。 37k Da融合蛋白和分离的37k Da肽可以在EGTA存在下被PK-A磷酸化。定点诱变将Ser603鉴定为融合蛋白交换蛋白部分的残基,该残基被PK-A磷酸化。当在Ca 2+存在下对分离的37k Da肽进行PK-A处理时,未观察到磷酸化。

著录项

  • 作者

    Ryan, Christopher M.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

  • 入库时间 2022-08-17 11:44:03

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