Direct observation of multiple protonation states in recombinant human purple acid phosphatase

被引:0
|
作者
Enrico G. Funhoff
Thyra E. de Jongh
Bruce A. Averill
机构
[1] University of Amsterdam,Swammerdam Institute for Life Sciences
[2] University of Toledo,Department of Chemistry
[3] ETH Hönggerberg,Institute of Biotechnology
关键词
Purple acid phosphatase; EPR; Mechanism; Kinetics; Spectroscopy;
D O I
暂无
中图分类号
学科分类号
摘要
To date, most spectroscopic studies on mammalian purple acid phosphatases (PAPs) have been performed at a single pH, typically pH 5. The catalytic activity of these enzymes is, however, pH dependent, with optimal pH values of 5.5–6.2 (depending on the form). For example, the pH optimum of PAPs isolated as single polypeptides is around pH 5.5, which is substantially lower that of proteolytically cleaved PAPs (ca. pH 6.2). In addition, the catalytic activity of single polypeptide PAPs at their optimal pH values is four to fivefold lower than that of the proteolytically cleaved enzymes. In order to elucidate the chemical basis for the pH dependence of these enzymes, the spectroscopic properties of both the single polypeptide and proteolytically cleaved forms of recombinant human PAP (recHPAP) and their complexes with inhibitory anions have been examined over the pH range 4 to 8. The EPR spectra of both forms of recHPAP are pH dependent and show the presence of three species: an inactive low pH form (pH<pKa,1), an active form (pKa,1<pH<pKa,2), and an inactive high pH form (pH>pKa,2). The pKa,1 values observed by EPR for the single polypeptide and proteolytically cleaved forms are similar to those previously observed in kinetics studies. The spectroscopic properties of the enzyme–phosphate complex (which should mimic the enzyme–substrate complex), the enzyme–fluoride complex, and the enzyme–fluoride–phosphate complex (which should mimic the ternary enzyme–substrate–hydroxide complex) were also examined. EPR spectra show that phosphate binds to the diiron center of the proteolytically cleaved form of the enzyme, but not to that of the single polypeptide form. EPR spectra also show that fluoride binds only to the low pH form of the enzymes, in which it presumably replaces a coordinated water molecule. The binding of fluoride and phosphate to form a ternary complex appears to be cooperative.
引用
收藏
页码:550 / 563
页数:13
相关论文
共 50 条
  • [21] Identification and molecular modeling of a novel, plant-like, human purple acid phosphatase
    Flanagan, J. U.
    Cassady, A. I.
    Schenk, G.
    Guddat, L. W.
    Hume, D. A.
    GENE, 2006, 377 : 12 - 20
  • [22] Multiple reversible protonation of polyoxoanion surfaces: Direct observation of dynamic structural effects from proton transfer
    Fang, Xikui
    Hill, Craig L.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2007, 46 (21) : 3877 - 3880
  • [23] MULTIPLE BINDING-SITES FOR TETRAHEDRAL OXYANION INHIBITORS OF BOVINE SPLEEN PURPLE ACID-PHOSPHATASE
    VINCENT, JB
    CROWDER, MW
    AVERILL, BA
    BIOCHEMISTRY, 1992, 31 (12) : 3033 - 3037
  • [24] Clinical observation of recombinant human endostatin in treating relapsed refractory multiple myeloma
    Huang, Hao
    Liu, Yang
    Lin, Quan-de
    Liu, Yu-zhang
    Liu, Li-na
    Zhang, Qing-lan
    Yu, Feng-kuan
    Song, Yong-ping
    Fang, Bai-jun
    CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY, 2018, 45 (12): : 1325 - 1327
  • [25] Characterization of four monoclonal antibodies to recombinant human Tartrate-resistant acid phosphatase
    Miyazaki, T
    Matsunaga, T
    Miyazaki, S
    Hokari, S
    Komoda, T
    HYBRIDOMA AND HYBRIDOMICS, 2002, 21 (03): : 191 - 195
  • [26] POLYCLONAL ANTIBODIES AGAINST THE PURPLE ACID-PHOSPHATASE FROM BOVINE SPLEEN AS A MARKER FOR TYPE-5 TARTRATE RESISTANT ACID-PHOSPHATASE IN HUMAN OSTEOCLASTS
    MUNSTERMANN, D
    LULFF, R
    SPENER, F
    SCHINDELMEISER, I
    SCHINDELMEISER, J
    BIOLOGICAL CHEMISTRY HOPPE-SEYLER, 1991, 372 (09): : 719 - 719
  • [27] Characterizations of recombinant human tartrate-resistant acid phosphatase from osteosarcoma: Comparison study between recombinant and placental proteins
    Miyazaki, S
    Igarashi, M
    Nagata, A
    Komoda, T
    METHODS AND FINDINGS IN EXPERIMENTAL AND CLINICAL PHARMACOLOGY, 2001, 23 (08): : 433 - 439
  • [28] PROTONATION OF AROMATIC PI-CARBOCATION IN STRONG ACID - DIRECT OBSERVATION OF PROTONATED CARBOCATIONS BY H-1-NMR SPECTROSCOPY
    SMITH, RJ
    PAGNI, RM
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1979, 101 (16) : 4769 - 4770
  • [29] PURPLE ACID-PHOSPHATASE OF THE HUMAN MACROPHAGE AND OSTEOCLAST - CHARACTERIZATION, MOLECULAR-PROPERTIES, AND CRYSTALLIZATION OF THE RECOMBINANT DI-IRON-OXO PROTEIN SECRETED BY BACULOVIRUS-INFECTED INSECT CELLS
    HAYMAN, AR
    COX, TM
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1994, 269 (02) : 1294 - 1300
  • [30] Dissection of the pH dependence of inhibitor binding energetics for an aspartic protease: Direct measurement of the protonation states of the catalytic aspartic acid residues
    Xie, D
    Gulnik, S
    Collins, L
    Gustchina, E
    Suvorov, L
    Erickson, JW
    BIOCHEMISTRY, 1997, 36 (51) : 16166 - 16172