Insulin-degrading enzyme

被引:1
|
作者
Authier, F
Posner, BI
Bergeron, JJM
机构
[1] MCGILL UNIV, DEPT ANAT & CELL BIOL, MONTREAL, PQ H3A 2B2, CANADA
[2] HOP NECKER ENFANTS MALAD, INSERM, U30, PARIS, FRANCE
[3] MCGILL UNIV, DEPT MED, MONTREAL, PQ H3A 2T5, CANADA
来源
CLINICAL AND INVESTIGATIVE MEDICINE | 1996年 / 19卷 / 03期
关键词
D O I
暂无
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
The authors review recent research on an enzyme hypothesized to play a major role in the degradation of insulin. After binding to its receptor on the cell surface, insulin is internalized by receptor-mediated endocytosis and degraded within components of the endosomal apparatus. Degradation of insulin is important in the termination of signaling and clearance of the circulating hormone. It has been proposed that insulin-degrading enzyme (IDE), an evolutionarily conserved, neutral thiol-metalloendopeptidase, plays a crucial role in the degradation of internalized insulin in many types of cells. Despite the substantial evidence supporting the importance of IDE in cellular insulin degradation, there is controversy over its mode and site of action, mainly because of its cytosolic location. Its physiological location in cells has recently been elucidated through subcellular fractionation of liver parenchyma and through immunofluorescence microscopy of stably transfected Chinese hamster ovary cells that overexpress IDE. These experiments have excluded the presence of the enzyme in endosomes and have defined a peroxisomal location, consistent with the presence of a peroxisomal targeting sequence at the carboxyl terminus of the protein. Recently, researchers have demonstrated the functional significance of peroxisome-associated IDE (type I peroxisomal enzyme) in degrading cleaved leader peptides of peroxisomal proteins targeted by the type II motif. IDE is the first cloned and characterized proteinase to be localized to peroxisomes. Moreover, IDE appears to be a member of a newly identified superfamily of metalloendopeptidases that has an HXXEH active-site motif. Although fundamental questions concerning the biological role of IDE remain, its high degree of evolutionary conservation suggests that it must have important functions and multifaceted biological significance.
引用
收藏
页码:149 / 160
页数:12
相关论文
共 50 条
  • [11] Anion Activation Site of Insulin-degrading Enzyme
    Noinaj, Nicholas
    Song, Eun Suk
    Bhasin, Sonia
    Alper, Benjamin J.
    Schmidt, Walter K.
    Hersh, Louis B.
    Rodgers, David W.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (01) : 48 - 57
  • [12] Insulin-Degrading Enzyme as a Therapeutic Target in Diabetes
    Abdul-Hay, Samer O.
    Caulfield, Thomas R.
    Leissring, Malcolm A.
    DIABETES, 2012, 61 : A615 - A615
  • [14] Hydroxypyridinethione Inhibitors of Human Insulin-Degrading Enzyme
    Adamek, Rebecca N.
    Suire, Caitlin N.
    Stokes, Ryjul W.
    Brizuela, Monica K.
    Cohen, Seth M.
    Leissring, Malcolm A.
    CHEMMEDCHEM, 2021, 16 (11) : 1775 - 1787
  • [15] Human Insulin-Degrading Enzyme Working Mechanism
    Amata, Orazio
    Marino, Tiziana
    Russo, Nino
    Toscano, Marirosa
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (41) : 14804 - 14811
  • [16] IDENTIFICATION OF ZINC LIGANDS OF THE INSULIN-DEGRADING ENZYME
    PERLMAN, RK
    ROSNER, MR
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1994, 269 (52) : 33140 - 33145
  • [17] Insulin-degrading enzyme: is it suitable for diabetes treatment?
    Grune, Tilman
    CELL CYCLE, 2015, 14 (16) : 2553 - 2553
  • [18] Modulation of the Activity of the Insulin-Degrading Enzyme by Aß Peptides
    Kemeh, Merc M.
    Lazo, Noel D.
    ACS CHEMICAL NEUROSCIENCE, 2023, 14 (16): : 2935 - 2943
  • [19] Nitric oxide inhibits insulin-degrading enzyme
    Cordes, Crystal
    Bennett, Robert G.
    Hamel, Frederick G.
    DIABETES, 2006, 55 : A561 - A561
  • [20] Production of an antigenic peptide by insulin-degrading enzyme
    Nicolas Parmentier
    Vincent Stroobant
    Didier Colau
    Philippe de Diesbach
    Sandra Morel
    Jacques Chapiro
    Peter van Endert
    Benoît J Van den Eynde
    Nature Immunology, 2010, 11 : 449 - 454