Crystal structure at 2.0 angstrom resolution of phosphoribosyl anthranilate isomerase from the hyperthermophile Thermotoga maritima: Possible determinants of protein stability

被引:84
|
作者
Hennig, M [1 ]
Sterner, R [1 ]
Kirschner, K [1 ]
Jansonius, JN [1 ]
机构
[1] UNIV BASEL, BIOZENTRUM, DEPT BIOPHYS CHEM, CH-4056 BASEL, SWITZERLAND
关键词
D O I
10.1021/bi962718q
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The structural basis of thermostability of proteins is of great scientific and biotechnological interest. Differences in the X-ray structues of orthologous proteins from hyperthermophilic and mesophilic organisms can indicate crucial stabilizing interactions. To this end the crystal structure of dimeric phosphoribosyl anthranilate isomerase from the hyperthermophile Thermotoga maritima (tPRAI) was determined using phases derived from the isomorphous replacement method and was refined at 2.0 Angstrom resolution. The comparison to the known 2.0 Angstrom structure of PRAI from Escherichia coli (ePRAI) shows that tPRAI has the complete TIM- or (beta alpha)(8)-barrel fold, whereas helix alpha 5 in ePRAI is replaced by a loop. The subunits of tPRAI associate via the N-terminal faces of their central beta-barrels. Two long, symmetry-related loops that protrude reciprocally into cavities of the other subunit provide for multiple hydrophobic interactions. Moreover, the side chains of the N-terminal methionines and the C-terminal leucines of both subunits are immobilized in a hydrophobic cluster, and the number of salt bridges is increased in tPRAI. These features appear to be mainly responsible for the high thermostability of tPRAI. In contrast to other hyperthermostable enzymes, tPRAI at 25 degrees C is catalytically more efficient than ePRAI, mainly due to its small K-M value for the substrate [Sterner, R., Kleemann, G. R., Szadkowski, H., Lustig, A., Hennig, M., & Kirschner, K. (1996) Protein Sci. 5, 2000-2008]. The increased number of hydrogen bonds between the phosphate ion and tPRAI compared to ePRAI could be responsible for this effect.
引用
收藏
页码:6009 / 6016
页数:8
相关论文
共 50 条
  • [1] Phosphoribosyl anthranilate isomerase from Thermotoga maritima is an extremely stable and active homodimer
    Sterner, R
    Kleemann, GR
    Szadkowski, H
    Lustig, A
    Hennig, M
    Kirschner, K
    PROTEIN SCIENCE, 1996, 5 (10) : 2000 - 2008
  • [2] 2.0 angstrom structure of indole-3-glycerol phosphate synthase from the hyperthermophile Sulfolobus solfataricus: Possible determinants of protein stability
    Hennig, M
    Darimont, B
    Sterner, R
    Kirschner, K
    Jansonius, JN
    STRUCTURE, 1995, 3 (12) : 1295 - 1306
  • [3] Crystal structure of glutamate dehydrogenase from the hyperthermophilic eubacterium Thermotoga maritima at 3.0 angstrom resolution
    Knapp, S
    deVos, WM
    Rice, D
    Ladenstein, R
    JOURNAL OF MOLECULAR BIOLOGY, 1997, 267 (04) : 916 - 932
  • [4] Crystal structure of uronate isomerase (TM0064) from Thermotoga maritima at 2.85 Å resolution
    Schwarzenbacher, R
    Canaves, JM
    Brinen, LS
    Dai, XP
    Deacon, AM
    Elsliger, MA
    Eshaghi, S
    Floyd, R
    Godzik, A
    Grittini, C
    Grzechnik, SK
    Guda, C
    Jaroszewski, L
    Karlak, C
    Klock, HE
    Koesema, E
    Kovarik, JS
    Kreusch, A
    Kuhn, P
    Lesley, SA
    McMullan, D
    McPhillips, TM
    Miller, MA
    Miller, MD
    Morse, A
    Moy, K
    Ouyang, J
    Robb, A
    Rodrigues, K
    Selby, TL
    Spraggon, G
    Stevens, RC
    van den Bedem, H
    Velasquez, J
    Vincent, J
    Wang, XH
    West, B
    Wolf, G
    Hodgson, KO
    Wooley, J
    Wilson, IA
    PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2003, 53 (01) : 142 - 145
  • [5] Crystal structure of a phosphoribosyl anthranilate isomerase from the hyperthermophilic archaeon Thermococcus kodakaraensis
    Perveen, Sumera
    Rashid, Naeem
    Papageorgiou, Anastassios C.
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS, 2016, 72 : 804 - 812
  • [6] Crystal structure of a LexA protein from Thermotoga maritima
    Zhang, Adrianna
    Grigorescu, Arabela
    Rice, Phoebe
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2007, 24 (06): : 610 - 610
  • [7] Crystal structure of S-adenosylmethionine:tRNA ribosyltransferase-isomerase (QueA) from Thermotoga maritima at 2.0 A resolution reveals a new fold
    Mathews, I
    Schwarzenbacher, R
    McMullan, D
    Abdubek, P
    Ambing, E
    Axelrod, H
    Biorac, T
    Canaves, JM
    Chiu, HJ
    Deacon, CM
    DiDonato, M
    Elsliger, MA
    Godzik, A
    Grittini, C
    Grzechnik, SK
    Hale, J
    Hampton, E
    Han, GW
    Haugen, J
    Hornsby, M
    Jaroszewski, L
    Klock, HE
    Koesema, E
    Kreusch, A
    Kuhn, P
    Lesley, SA
    Levin, I
    Miller, MD
    Moy, K
    Nigoghossian, E
    Ouyang, J
    Paulsen, J
    Quijano, K
    Reyes, R
    Spraggon, G
    Stevens', RC
    van den Bedem, H
    Velasquez, J
    Vincent, J
    White, A
    Wolf, G
    Xu, QP
    Hodgson, KO
    Wooley, J
    Wilson, IA
    PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2005, 59 (04) : 869 - 874
  • [8] Crystal structure of γ-glutamyl phosphate reductase (TM0293) from Thermotoga maritima at 2.0 Å resolution
    Page, R
    Nelson, MS
    von Delft, F
    Elsliger, MA
    Canaves, JM
    Brinen, LS
    Dai, XP
    Deacon, AM
    Floyd, R
    Godzik, A
    Grittini, C
    Grzechnik, SK
    Jaroszewski, L
    Klock, HE
    Koesema, E
    Kovarik, JS
    Kreusch, A
    Kuhn, P
    Lesley, SA
    McMullan, D
    McPhillips, TM
    Miller, MD
    Morse, A
    Moy, K
    Ouyang, J
    Robb, A
    Rodrigues, K
    Schwarzenbacher, R
    Spraggon, G
    Stevens, RC
    van den Bedem, H
    Velasquez, J
    Vincent, J
    Wang, XH
    West, B
    Wolf, G
    Hodgson, KO
    Wooley, J
    Wilson, IA
    PROTEINS-STRUCTURE FUNCTION AND GENETICS, 2004, 54 (01): : 157 - 161
  • [9] Crystal structure of the ApbE protein (TM1553) from Thermotoga maritima at 1.58 Å Resolution
    Han, Gye Won
    Krishna, S. Sri
    Schwarzenbacher, Robert
    McMullan, Daniel
    Ginalski, Krzysztof
    Elsliger, Marc-Andre
    Brittain, Scott M.
    Abdubek, Polat
    Agarwalla, Sanjay
    Ambing, Eileen
    Astakhova, Tamara
    Axelrod, Herbert
    Canaves, Jaume M.
    Chin, Hsiu-Ju
    DiDonato, Michael
    Grzechnik, Slawomir K.
    Hale, Joanna
    Hampton, Eric
    Haugen, Justin
    Jaroszewski, Lukasz
    Jin, Kevin K.
    Klock, Heath E.
    Knuth, Mark W.
    Koesema, Eric
    Kreusch, Andreas
    Kuhn, Peter
    Miller, Mitchell D.
    Morse, Andrew T.
    Moy, Kin
    Nigoghossian, Edward
    Oommachen, Sylvia
    Ouyang, Jie
    Paulsen, Jessica
    Quijano, Kevin
    Reyes, Ron
    Rife, Chris
    Spraggon, Glen
    Stevens, Raymond C.
    van den Bedem, Henry
    Velasquez, Jeff
    Wang, Xianhong
    West, Bill
    White, Aprilfawn
    Wolf, Guenter
    Xu, Qingping
    Hodgson, Keith O.
    Wooley, John
    Deacon, Ashley M.
    Godzik, Adam
    Lesley, Scott A.
    PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2006, 64 (04) : 1083 - 1090
  • [10] Crystal structure of the flagellar rotor protein FIN from Thermotoga maritima
    Brown, PN
    Mathews, MAA
    Joss, LA
    Hill, CP
    Blair, DF
    JOURNAL OF BACTERIOLOGY, 2005, 187 (08) : 2890 - 2902