Phosphorylation destabilizes the amino-terminal domain of enzyme I of the Escherichia coli phosphoenolpyruvate:sugar phosphotransferase system

被引:42
作者
Nosworthy, NJ
Peterkofsky, A
König, S
Seok, YJ
Szczepanowski, RH
Ginsburg, A
机构
[1] NHLBI, Sect Prot Chem, Biochem Lab, NIH, Bethesda, MD 20892 USA
[2] NHLBI, Macromol Sect, Lab Biochem Genet, NIH, Bethesda, MD 20892 USA
[3] NHLBI, Biophys Chem Lab, NIH, Bethesda, MD 20892 USA
关键词
D O I
10.1021/bi980126x
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
Thermal stabilities of enzyme I (63 562 M-r subunit), in the Escherichia coli phosphoenolpyruvate (PEP),sugar phosphotransferase system (PTS), and a cloned amino-terminal domain of enzyme I (EIN; 28 34-6 M,) were investigated by differential scanning calorimetry (DSC) and far-UV circular dichroism (CD) at PH 7.5. EIN expressed in a Delta pts E. coli strain showed a single, reversible, two-state transition with T-m = 57 degrees C and an unfolding enthalpy of similar to 140 kcal/mol, In contrast, monomeric EIN expressed in a wild-type strain (pts(+)) had two endotherms with T-m congruent to 50 and 57 degrees C and overall Delta H = 140 kcal/mol and was converted completely to the more stable form after five DSC scans from 10 to 75 DC (without changes in CD: similar to 58% alpha-helices). Thermal conversion to a more stable form was correlated with dephosphorylation of EIN by mass spectral analysis. Dephospho-enzyme I (monomer reversible arrow dimer) exhibited endotherms for C-and N-terminal domain unfolding with T-m = 41 and 54 degrees C, respectively. Thermal unfolding of the C-terminal domain occurred over a broad temperature range (similar to 30-50 degrees C), was scan rate-and concentration-dependent, coincident with a Light scattering decrease and Trp residue exposure, and independent of phosphorylation. Reversible thermal unfolding of the nonphosphorylated N-terminal domain was more cooperative, occurring from 50 to 60 degrees C. DSC of partially phosphorylated enzyme I indicated that the amino-terminal domain was destabilized by phosphorylation (from T-m = 54 to similar to 48 degrees C). A decrease in conformational stability of the amino-terminal domain of enzyme I produced by phosphorylation of the active-site His 189 has the physiological consequence of promoting phosphotransfer to the phosphocarrier protein, HPr.
引用
收藏
页码:6718 / 6726
页数:9
相关论文
共 43 条
[11]   UNRAVELING A BACTERIAL HEXOSE-TRANSPORT PATHWAY [J].
HERZBERG, O ;
KLEVIT, R .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 1994, 4 (06) :814-822
[12]   Structure-based statistical thermodynamic analysis of T4 lysozyme mutants: Structural mapping of cooperative interactions [J].
Hilser, VJ ;
Townsend, BD ;
Freire, E .
BIOPHYSICAL CHEMISTRY, 1997, 64 (1-3) :69-79
[13]  
Hilser VJ, 1996, PROTEINS, V26, P123, DOI 10.1002/(SICI)1097-0134(199610)26:2<123::AID-PROT2>3.0.CO
[14]  
2-H
[15]   Energetic implications for protein phosphorylation - Conformational stability of HPr variants that mimic phosphorylated forms [J].
Huffine, ME ;
Scholtz, JM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (46) :28898-28902
[16]  
KIRCHHOFF WH, 1993, 1401 NIST CODEN NTNO
[17]   CLEAVAGE OF STRUCTURAL PROTEINS DURING ASSEMBLY OF HEAD OF BACTERIOPHAGE-T4 [J].
LAEMMLI, UK .
NATURE, 1970, 227 (5259) :680-+
[18]   A THIOREDOXIN GENE FUSION EXPRESSION SYSTEM THAT CIRCUMVENTS INCLUSION BODY FORMATION IN THE ESCHERICHIA-COLI CYTOPLASM [J].
LAVALLIE, ER ;
DIBLASIO, EA ;
KOVACIC, S ;
GRANT, KL ;
SCHENDEL, PF ;
MCCOY, JM .
BIO-TECHNOLOGY, 1993, 11 (02) :187-193
[19]   IDENTIFICATION OF THE N-TERMINAL DOMAIN OF ENZYME-I OF THE ESCHERICHIA-COLI PHOSPHOENOLPYRUVATE-SUGAR PHOSPHOTRANSFERASE SYSTEM PRODUCED BY PROTEOLYTIC DIGESTION [J].
LEE, BR ;
LECCHI, P ;
PANNELL, L ;
JAFFE, H ;
PETERKOFSKY, A .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1994, 312 (01) :121-124
[20]   CYCLIC-AMP SYNTHESIS IN ESCHERICHIA-COLI STRAINS BEARING KNOWN DELETIONS IN THE PTS PHOSPHOTRANSFERASE OPERON [J].
LEVY, S ;
ZENG, GQ ;
DANCHIN, A .
GENE, 1990, 86 (01) :27-33