Structure-sweetness relationship in egg white lysozyme: Role of lysine and arginine residues on the elicitation of lysozyme sweetness

被引:44
作者
Masuda, T [1 ]
Ide, N [1 ]
Kitabatake, N [1 ]
机构
[1] Kyoto Univ, Grad Sch Agr, Div Food Sci & Biotechnol, Kyoto 6110011, Japan
关键词
basicity; lysozyme; mutation; Pichia pastoris; structure-function of sweet protein; sweet-tasting proteins;
D O I
10.1093/chemse/bji060
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
Lysozyme is one of the sweet-tasting proteins. To clarify the structure-sweetness relationship and the basicity-sweetness relationship in lysozyme, we have generated lysozyme mutants with Pichia systems. Alanine substitution of lysine residues demonstrated that two out of six lysine residues, Lys13 and Lys96, are required for lysozyme sweetness, while the remaining four lysine residues do not play a significant role in the perception of sweetness. Arginine substitution of lysine residues revealed that the basicity, but not the shape, of the side chain plays a significant role in sweetness. Single alanine substitutions of arginine residues showed that three arginine residues, Arg14, Arg21, and Arg73, play significant roles in lysozyme sweetness, whereas Arg45, Arg68, Arg125 and chemical modification by 1,2-cyclohexanedione did not affect sweetness. From investigation of the charge-specific mutations, we found that the basicity of a broad surface region formed by five positively charged residues, Lys13, Lys96, Arg14, Arg21, and Arg73, is required for lysozyme sweetness. Differences in the threshold values among sweet-tasting proteins might be caused by the broadness and/or the density of charged residues on the protein surface.
引用
收藏
页码:667 / 681
页数:15
相关论文
共 56 条
  • [1] SOLID-PHASE SYNTHESIS AND STRUCTURE-ACTIVITY-RELATIONSHIPS OF ANALOGS OF THE SWEET PROTEIN MONELLIN
    ARIYOSHI, Y
    [J]. JOURNAL OF SYNTHETIC ORGANIC CHEMISTRY JAPAN, 1994, 52 (05) : 359 - 369
  • [2] Efficient production of recombinant brazzein, a small, heat-stable, sweet-tasting protein of plant origin
    Assadi-Porter, FM
    Aceti, DJ
    Cheng, H
    Markley, JL
    [J]. ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2000, 376 (02) : 252 - 258
  • [3] CRYSTALLOGRAPHIC STUDIES OF ACTIVITY OF HEN EGE-WHITE LYSOZYME
    BLAKE, CCF
    JOHNSON, LN
    MAIR, GA
    NORTH, ACT
    PHILLIPS, DC
    SARMA, VR
    [J]. PROCEEDINGS OF THE ROYAL SOCIETY SERIES B-BIOLOGICAL SCIENCES, 1967, 167 (1009): : 378 - +
  • [4] Solution structure of the thermostable sweet-tasting protein brazzein
    Caldwell, JE
    Abildgaard, F
    Dzakula, Z
    Ming, D
    Hellekant, G
    Markley, JL
    [J]. NATURE STRUCTURAL BIOLOGY, 1998, 5 (06) : 427 - 431
  • [5] Detection of sweet and umami taste in the absence of taste receptor T1r3
    Damak, S
    Rong, MQ
    Yasumatsu, K
    Kokrashvili, Z
    Varadarajan, V
    Zou, SY
    Jiang, PH
    Ninomiya, Y
    Margolskee, RF
    [J]. SCIENCE, 2003, 301 (5634) : 850 - 853
  • [6] Dudler R, 1994, THAUMATIN, P193
  • [7] A PROCEDURE FOR SELECTIVE MODIFICATION OF CARBOXYL GROUPS IN PROTEINS
    HOARE, DG
    KOSHLAND, DE
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1966, 88 (09) : 2057 - &
  • [8] Putative mammalian taste receptors: A class of taste-specific GPCRs with distinct topographic selectivity
    Hoon, MA
    Adler, E
    Lindemeier, J
    Battey, JF
    Ryba, NJP
    Zuker, CS
    [J]. CELL, 1999, 96 (04) : 541 - 551
  • [9] Imoto T., 1972, ENZYME, V7, P665
  • [10] The cysteine-rich region of T1R3 determines responses to intensely sweet proteins
    Jiang, PH
    Ji, QZ
    Liu, Z
    Snyder, LA
    Benard, LMJ
    Margolskee, RF
    Max, M
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (43) : 45068 - 45075