Annexins: From structure to function

被引:1678
作者
Gerke, V
Moss, SE
机构
[1] Univ Munster, ZMBE, Inst Med Biochem, Ctr Mol Biol Inflammat, D-48149 Munster, Germany
[2] UCL, Inst Ophthalmol, Dept Cell Biol, London, England
关键词
D O I
10.1152/physrev.00030.2001
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Annexins are Ca2+ and phospholipid binding proteins forming an evolutionary conserved multigene family with members of the family being expressed throughout animal and plant kingdoms. Structurally, annexins are characterized by a highly alpha-helical and tightly packed protein core domain considered to represent a Ca2+-regulated membrane binding module. Many of the annexin cores have been crystallized, and their molecular structures reveal interesting features that include the architecture of the annexin-type Ca2+ binding sites and a central hydrophilic pore proposed to function as a Ca2+ channel. In addition to the conserved core, all annexins contain a second principal domain. This domain, which NH2-terminally precedes the core, is unique for a given member of the fan-Lily and most likely specifies individual annexin properties in vivo. Cellular and animal knock-out models as well as dominant-negative mutants have recently been established for a number of annexins, and the effects of such manipulations are strikingly different for different members of the family. At least for some annexins, it appears that they participate in the regulation of membrane organization and membrane traffic and the regulation of ion (Ca2+) currents across membranes or Ca2+ concentrations within cells. Although annexins lack signal sequences for secretion, some members of the family have also been identified extracellularly where they can act as receptors for serum proteases on the endothelium. as well as inhibitors of neutrophil migration and blood coagulation. Finally, deregulations in annexin expression and activity have been correlated with human diseases, e.g., in acute promyelocytic leukemia and the antiphospholipid antibody syndrome, and the term annexinopathies has been coined.
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页码:331 / 371
页数:41
相关论文
共 348 条
  • [11] BANDOROWICZPIKU.S, 1999, ACTA BIOCHIM POL, V46, P810
  • [12] Baran DT, 2000, J CELL BIOCHEM, V80, P259
  • [13] Baran DT, 2000, J CELL BIOCHEM, V78, P34, DOI 10.1002/(SICI)1097-4644(20000701)78:1<34::AID-JCB4>3.3.CO
  • [14] 2-Q
  • [15] GOLGI SPECTRIN - IDENTIFICATION OF AN ERYTHROID BETA-SPECTRIN HOMOLOG ASSOCIATED WITH THE GOLGI-COMPLEX
    BECK, KA
    BUCHANAN, JA
    MALHOTRA, V
    NELSON, WJ
    [J]. JOURNAL OF CELL BIOLOGY, 1994, 127 (03) : 707 - 723
  • [16] PROTEIN PROTEIN RECOGNITION VIA SHORT AMPHIPHILIC HELICES - A MUTATIONAL ANALYSIS OF THE BINDING-SITE OF ANNEXIN-II FOR P11
    BECKER, T
    WEBER, K
    JOHNSSON, N
    [J]. EMBO JOURNAL, 1990, 9 (13) : 4207 - 4213
  • [17] Acid induced equilibrium unfolding of annexin V wild type shows two intermediate states
    Beermann ofm cap, BB
    Hinz, HJ
    Hofmann, A
    Huber, R
    [J]. FEBS LETTERS, 1998, 423 (02) : 265 - 269
  • [18] Tyrosine phosphorylation of annexin II tetramer is stimulated by membrane binding
    Bellagamba, C
    Hubaishy, I
    Bjorge, JD
    Fitzpatrick, SL
    Fujita, DJ
    Waisman, DM
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (06) : 3195 - 3199
  • [19] Expression and localization of the annexins II, V, and VI in myocardium from patients with end-stage heart failure
    Benevolensky, D
    Belikova, Y
    Mohammadzadeh, R
    Trouvé, P
    Marotte, F
    Russo-Marie, F
    Samuel, JL
    Charlemagne, D
    [J]. LABORATORY INVESTIGATION, 2000, 80 (02) : 123 - 133
  • [20] The structure of recombinant human annexin VI in crystals and membrane-bound
    Benz, J
    Bergner, A
    Hofmann, A
    Demange, P
    Gottig, P
    Liemann, S
    Huber, R
    Voges, D
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1996, 260 (05) : 638 - 643