Modification of tubulin cysteines by nitric oxide and nitroxyl donors alters tubulin polymerization activity

被引:57
作者
Landino, Lisa M. [1 ]
Koumas, Maria T. [1 ]
Mason, Courtney E. [1 ]
Alston, Jane A. [1 ]
机构
[1] Coll William & Mary, Dept Chem, Williamsburg, VA 23187 USA
关键词
D O I
10.1021/tx7001492
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The modification of reduced cysteines of proteins by nitric oxide alters protein function, structure, and potentially, interactions with downstream signaling targets. We assessed the effect of the S-nitroso compounds S-nitrosoglutathione and S-nitroso-N-acetyl-penicillamine, the NO donor 2-(N,N-diethylamino)-diazenolate 2-oxide, and the nitroxyl donor Angeli's salt on the cysteines of the abundant cytoskeletal protein, tubulin. Total cysteine modification by each compound was quantitated and compared to peroxynitrite anion, an oxidant that we have studied previously. Angeli's salt was most effective at modifying the cysteines of tubulin and at inducing the formation of tubulin interchain disulfide bonds followed by peroxynitrite anion, S-nitrosoglutathione, S-nitroso-N-acetyl-penicillamine, and 2-(N,N-diethylamino)-diazenolate 2-oxide. S-nitrosation of tubulin by S-nitrosoglutathione and S-nitroso-N-acetyl-penicillamine was detected by the Saville assay. Our data show that tubulin interchain disulfide bond formation by these molecules correlated with inhibition of tubulin polymerization. Closer examination of the reaction of tubulin with S-nitrosoglutathione showed a concentration-dependent shift in the type of cysteine modification detected. More tubulin disulfides were detected at lower concentrations of S-nitrosoglutathione than at higher concentrations, suggesting that reduced glutathione, generated by the reaction of S-nitrosoglutathione with tubulin cysteines, reduced disulfides initially formed by S-nitrosoglutathione.
引用
收藏
页码:1693 / 1700
页数:8
相关论文
共 42 条
  • [1] ANDERSON PJ, 1979, J BIOL CHEM, V254, P2168
  • [2] ARNELLE DR, 1996, METHODS NITRIC OXIDE, P541
  • [3] BECKMAN JS, 1994, METHOD ENZYMOL, V233, P229
  • [4] Convenient colorimetric and fluorometric assays for S-nitrosothiols
    Cook, JA
    Kim, SY
    Teague, D
    Krishna, MC
    Pacelli, R
    Mitchell, JB
    Vodovotz, Y
    Nims, RW
    Christodoulou, D
    Miles, AM
    Grisham, MB
    Wink, DA
    [J]. ANALYTICAL BIOCHEMISTRY, 1996, 238 (02) : 150 - 158
  • [5] Dasgupta TP, 2002, METHOD ENZYMOL, V359, P219
  • [6] OXIDATION AND REDUCTION OF HEMOPROTEINS BY TRIOXODINITRATE(II) - THE ROLE OF NITROSYL HYDRIDE AND NITRITE
    DOYLE, MP
    MAHAPATRO, SN
    BROENE, RD
    GUY, JK
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (02) : 593 - 599
  • [7] The physiological chemistry and biological activity of nitroxyl (HNO): The neglected, misunderstood, and enigmatic nitrogen oxide
    Fukuto, JM
    Bartberger, MD
    Dutton, AS
    Paolocci, N
    Wink, DA
    Houk, KN
    [J]. CHEMICAL RESEARCH IN TOXICOLOGY, 2005, 18 (05) : 790 - 801
  • [8] ENDOGENOUS NITROGEN-OXIDES AND BRONCHODILATOR S-NITROSOTHIOLS IN HUMAN AIRWAYS
    GASTON, B
    REILLY, J
    DRAZEN, JM
    FACKLER, J
    RAMDEV, P
    ARNELLE, D
    MULLINS, ME
    SUGARBAKER, DJ
    CHEE, C
    SINGEL, DJ
    LOSCALZO, J
    STAMLER, JS
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (23) : 10957 - 10961
  • [9] GILBERT HF, 1995, METHOD ENZYMOL, V251, P8, DOI 10.1016/0076-6879(95)51107-5
  • [10] Good PF, 1996, AM J PATHOL, V149, P21