An insight into the molecular basis of salt tolerance of L-myo-inositol 1-P synthase (PcINO1) from Porteresia coarctata (Roxb.) Tateoka, a halophytic wild rice

被引:42
作者
Dastidar, KG
Maitra, S
Goswami, L
Roy, D
Das, KP
Majumder, AL [1 ]
机构
[1] Bose Inst, Calcutta Improvement Trust Scheme, VIIM, Bioinformat Ctr, Kolkata 700054, W Bengal, India
[2] Bose Inst, Calcutta Improvement Trust Scheme, VIIM, Dept Chem, Kolkata 700054, W Bengal, India
关键词
D O I
10.1104/pp.105.075150
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The molecular basis of salt tolerance of L myo-inositol 1-P synthase (MIPS; EC 5.5.1.4) from Porteresia coarctata (Roxb.) Tateoka (PcINO1, AF412340) earlier reported from this laboratory, has been analyzed by in vitro mutant and hybrid generation and subsequent biochemical and biophysical studies of the recombinant proteins. A 37-amino acid stretch between Trp-174 and Ser-210 has been confirmed as the salt-tolerance determinant domain in PcINO1 both by loss or gain of salt tolerance by either deletion or by addition to salt-sensitive MIPS(s) of Oryza (OsINO1) and Brassica juncea (BjINO1). This was further verified by growth analysis under salt environment of Schizosaccharomyces pombe transformed with the various gene constructs and studies on the differential behavior of mutant and wild proteins by Trp fluorescence, aggregation, and circular dichroism spectra in the presence of salt. 4,4'-Dianilino-1,1'-binaphthyl-5,5-disulfonic acid binding experiments revealed a lower hydrophobic surface on PcINO1 than OsINO1, contributed by this 37-amino acid stretch explaining the differential behavior of OsINO1 and PcINO1 both with respect to their enzymatic functions and thermodynamic stability in high salt environment. Detailed amino acid sequence comparison and modeling studies revealed the interposition of polar and charged residues and a well-connected hydrogen-bonding network formed by Ser and Thr in this stretch of PcINO1. On the contrary, hydrophobic residues clustered in two continuous stretches in the corresponding region of OsINO1 form a strong hydrophobic patch on the surface. It is conceivable that salt-tolerant MIPS proteins may be designed out of the salt-sensitive plant MIPS proteins by replacement of the corresponding amino acid stretch by the designated 37-amino acid stretch of PcINO1.
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页码:1279 / 1296
页数:18
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共 63 条
[21]   Conformational properties of substrate proteins bound to a molecular chaperone alpha-crystallin [J].
Das, KP ;
Petrash, JM ;
Surewicz, WK .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (18) :10449-10452
[22]   The effects of ionic strength on protein stability: The cold shock protein family [J].
Dominy, BN ;
Perl, D ;
Schmid, FX ;
Brooks, CL .
JOURNAL OF MOLECULAR BIOLOGY, 2002, 319 (02) :541-554
[23]   FLUORESCENCE QUENCHING STUDIES WITH PROTEINS [J].
EFTINK, MR ;
GHIRON, CA .
ANALYTICAL BIOCHEMISTRY, 1981, 114 (02) :199-227
[24]   Electrostatic contributions to the stability of halophilic proteins [J].
Elcock, AH ;
McCammon, JA .
JOURNAL OF MOLECULAR BIOLOGY, 1998, 280 (04) :731-748
[25]  
Fersht A., 1999, STRUCTURE MECH PROTE
[26]   CONSISTENT FORCE-FIELD STUDIES OF INTER-MOLECULAR FORCES IN HYDROGEN-BONDED CRYSTALS .2. BENCHMARK FOR THE OBJECTIVE COMPARISON OF ALTERNATIVE FORCE-FIELDS [J].
HAGLER, AT ;
LIFSON, S ;
DAUBER, P .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1979, 101 (18) :5122-5130
[27]   Plant cellular and molecular responses to high salinity [J].
Hasegawa, PM ;
Bressan, RA ;
Zhu, JK ;
Bohnert, HJ .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 2000, 51 :463-499
[28]   HYDROPHOBIC SURFACES THAT ARE HIDDEN IN CHAPERONIN CPN60 CAN BE EXPOSED BY FORMATION OF ASSEMBLY-COMPETENT MONOMERS OR BY IONIC PERTURBATION OF THE OLIGOMER [J].
HOROWITZ, PM ;
HUA, S ;
GIBBONS, DL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (04) :1535-1542
[29]   ALPHA-CRYSTALLIN CAN FUNCTION AS A MOLECULAR CHAPERONE [J].
HORWITZ, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (21) :10449-10453
[30]   Restoration of inositol prototrophy in the fission yeast Schizosaccharomyces pombe [J].
Ingavale, SS ;
Bachhawat, AK .
MICROBIOLOGY-SGM, 1999, 145 :1903-1910