Solution Structure of Calmodulin Bound to the Target Peptide of Endothelial Nitric Oxide Synthase Phosphorylated at Thr495

被引:27
|
作者
Piazza, Michael [1 ]
Taiakina, Valentina [1 ]
Guillemette, Simon R. [1 ]
Guillemette, J. Guy [1 ]
Dieckmann, Thorsten [1 ]
机构
[1] Univ Waterloo, Dept Chem, Waterloo, ON N2L 3G1, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
NMR-SPECTROSCOPY; BINDING; APOCALMODULIN; ACTIVATION; PROTEINS; DOMAIN;
D O I
10.1021/bi401466s
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Nitric oxide synthase (NOS) plays a major role in a number of key physiological and pathological processes, and it is important to understand how this enzyme is regulated. The small acidic calcium binding protein, calmodulin (CaM), is required to fully activate the enzyme. The exact mechanism of how CaM activates NOS is not fully understood at this time. Studies have shown CaM to act like a switch that causes a conformational change in NOS to allow for the transfer of an electron between the reductase and oxygenase domains through a process that is thought to be highly dynamic and at least in part controlled by several possible phosphorylation sites. We have determined the solution structure of CaM bound to a peptide that contains a phosphorylated threonine corresponding to Thr495 in full size endothelial NOS (eNOS) to investigate the structural and functional effects that the phosphorylation of this residue may have on nitric oxide production. Our biophysical studies show that phosphorylation of Thr495 introduces electrostatic repulsions between the target sequence and CaM as well as a diminished propensity for the peptide to form an alpha-helix. The calcium affinity of the CaM-target peptide complex is reduced because of phosphorylation, and this leads to weaker binding at low physiological calcium concentrations. This study provides an explanation for the reduced level of NO production by eNOS carrying a phosphorylated Thr495 residue.
引用
下载
收藏
页码:1241 / 1249
页数:9
相关论文
共 50 条
  • [21] Binding kinetics of calmodulin with target peptides of three nitric oxide synthase isozymes
    Wu, Gang
    Berta, Vladimir
    Tsai, Ah-Lim
    JOURNAL OF INORGANIC BIOCHEMISTRY, 2011, 105 (09) : 1226 - 1237
  • [22] CALMODULIN IS A TIGHTLY BOUND SUBUNIT OF NITRIC-OXIDE SYNTHASE FROM MURINE MACROPHAGES
    CHO, HJ
    XIE, QW
    CALAYCAY, J
    MUMFORD, RA
    SWIDEREK, KM
    LEE, TD
    NATHAN, CF
    CLINICAL RESEARCH, 1992, 40 (02): : A185 - A185
  • [23] Dynamic Conformational Changes of Calmodulin when Bound to Nitric Oxide Synthase using FRET
    Spratt, Donald E.
    Taiakina, Valentina
    Guillemette, J. Guy
    FASEB JOURNAL, 2008, 22
  • [24] Stimulation of endothelial nitric oxide synthase by proinsulin C-peptide
    Wallerath, T
    Kunt, T
    Forst, T
    Closs, EI
    Lehmann, R
    Flohr, T
    Gabriel, M
    Schäfer, D
    Göpfert, A
    Pfützner, A
    Beyer, J
    Förstermann, U
    NITRIC OXIDE-BIOLOGY AND CHEMISTRY, 2003, 9 (02): : 95 - 102
  • [25] Activation of endothelial nitric oxide synthase (eNOS) by C-peptide
    Kunt, T
    Forst, T
    Wallerath, T
    Closs, E
    Lehmann, R
    Löbig, M
    Engelbach, M
    Beyer, A
    Pfützner, A
    Förstermann, U
    JOURNAL OF VASCULAR RESEARCH, 1999, 36 (02) : 180 - 180
  • [26] Activation of endothelial nitric oxide synthase (eNOS) by C-peptide.
    Kunt, T
    Forst, T
    Closs, E
    Wallerath, T
    Foerstermann, U
    Lehmann, R
    Pfuetzner, A
    Harzer, O
    Engelbach, M
    Beyer, J
    DIABETOLOGIA, 1998, 41 : A176 - A176
  • [27] Solution structure of the extended neuronal nitric oxide synthase PDZ domain complexed with an associated peptide
    Tochio, H
    Zhang, Q
    Mandal, P
    Li, M
    Zhang, MJ
    NATURE STRUCTURAL BIOLOGY, 1999, 6 (05): : 417 - 421
  • [28] Endothelial nitric oxide synthase: a potential therapeutic target for cerebrovascular diseases
    Jinqiang Zhu
    Wanshan Song
    Lin Li
    Xiang Fan
    Molecular Brain, 9
  • [29] Therapeutic Strategies to Target Endothelial Nitric-Oxide Synthase (eNOS)
    Chen, Alex F.
    Li, Huige
    CURRENT PHARMACEUTICAL DESIGN, 2014, 20 (22) : 3501 - 3502
  • [30] Endothelial nitric oxide synthase: a potential therapeutic target for cerebrovascular diseases
    Zhu, Jinqiang
    Song, Wanshan
    Li, Lin
    Fan, Xiang
    MOLECULAR BRAIN, 2016, 9