MECHANISM OF PHAGE-P22 TAILSPIKE PROTEIN-FOLDING MUTATIONS

被引:65
作者
DANNER, M [1 ]
SECKLER, R [1 ]
机构
[1] UNIV REGENSBURG, INST BIOPHYS & PHYS BIOCHEM, D-93040 REGENSBURG, GERMANY
关键词
BACTERIOPHAGE-P22; FOLDING INTERMEDIATES; INCLUSION BODY; PROTEIN FOLDING; TAILSPIKE PROTEIN; TEMPERATURE-SENSITIVE MUTATIONS;
D O I
10.1002/pro.5560021109
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
Temperature-sensitive folding (tsf) and global-tsf-suppressor (su) point mutations affect the folding yields of the trimeric, thermostable phage P22 tailspike endorhamnosidase at elevated temperature, both in vivo and in vitro, but they have little effect on function and stability of the native folded protein. To delineate the mechanism by which these mutations modify the partitioning between productive folding and off-pathway aggregation, the kinetics of refolding after dilution from acid-urea solutions and the thermal stability of folding intermediates were analyzed. The study included five tsf mutations of varying severity, the two known su mutations, and four tsf/su double mutants. At low temperature (10-degrees-C), subunit-folding rates, measured as an increase in fluorescence, were similar for wild-type and mutants. At 25-degrees-C, however, tsf mutations reduced the rate of subunit folding. The su mutations increased this rate, when present in the tsf-mutant background, but had no effect in the wild-type background. Conversely, tsf mutations accelerated, and su mutations retarded the irreversible off-pathway reaction, as revealed by temperature down-shifts after varied times during refolding at high temperature (40-degrees-C). The kinetic results are consistent with tsf mutations destabilizing and su mutations stabilizing an essential subunit folding intermediate. In accordance with this interpretation, tsf mutations decreased, and su mutations increased the temperature resistance of folding intermediates, as disclosed by temperature up-shifts during refolding at 25-degrees-C. The stabilizing and destabilizing effects were most pronounced early during refolding. However, they were not limited to subunit-folding intermediates and were also observable during thermal unfolding of the native protein.
引用
收藏
页码:1869 / 1881
页数:13
相关论文
共 28 条
  • [21] An essential serotype recognition pocket on phage P22 tailspike protein forces Salmonella enterica serovar Paratyphi A O-antigen fragments to bind as nonsolution conformers
    Andres, Dorothee
    Gohlke, Ulrich
    Broeker, Nina K.
    Schulze, Stefan
    Rabsch, Wolfgang
    Heinemann, Udo
    Barbirz, Stefanie
    Seckler, Robert
    GLYCOBIOLOGY, 2013, 23 (04) : 486 - 494
  • [22] THE STRUCTURE OF THE TRANSITION-STATE FOR FOLDING OF CHYMOTRYPSIN INHIBITOR-2 ANALYZED BY PROTEIN ENGINEERING METHODS - EVIDENCE FOR A NUCLEATION-CONDENSATION MECHANISM FOR PROTEIN-FOLDING
    ITZHAKI, LS
    OTZEN, DE
    FERSHT, AR
    JOURNAL OF MOLECULAR BIOLOGY, 1995, 254 (02) : 260 - 288
  • [23] The C-terminus of the P22 tailspike protein acts as an independent oligomerization domain for monomeric proteins
    Webber, Tawnya
    Gurung, Sarsati
    Saul, Justin
    Baker, Trenton
    Spatara, Michelle
    Freyer, Matthew
    Robinson, Anne Skaja
    Gage, Matthew J.
    BIOCHEMICAL JOURNAL, 2009, 419 : 595 - 602
  • [24] Contextual Role of a Salt Bridge in the Phage P22 Coat Protein I-Domain
    Harprecht, Christina
    Okifo, Oghenefejiro
    Robbins, Kevin J.
    Motwani, Tina
    Alexandrescu, Andrei T.
    Teschke, Carolyn M.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2016, 291 (21) : 11359 - 11372
  • [25] An Intramolecular Chaperone Inserted in Bacteriophage P22 Coat Protein Mediates Its Chaperonin-independent Folding
    Suhanovsky, Margaret M.
    Teschke, Carolyn M.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (47) : 33772 - 33783
  • [26] The folding pathway of the cell-cycle regulatory protein p13suc1: clues for the mechanism of domain swapping
    Schymkowitz, JWH
    Rousseau, F
    Irvine, LR
    Itzhaki, LS
    STRUCTURE, 2000, 8 (01) : 89 - 100
  • [27] The Shigella flexneri bacteriophage Sf6 tailspike protein (TSP)/endorhamnosidase is related to the bacteriophage P22 TSP and has a motif common to exo- and endoglycanases, and C-5 epimerases
    Chua, JEH
    Manning, PA
    Morona, R
    MICROBIOLOGY-UK, 1999, 145 : 1649 - 1659
  • [28] Folding mechanism of an ankyrin repeat protein:: Scaffold and active site formation of human CDK inhibitor p19INK4d
    Loew, Christian
    Weininger, Ulrich
    Zeeb, Markus
    Zhang, Wei
    Laue, Ernest D.
    Schmid, Franz X.
    Balbach, Jochen
    JOURNAL OF MOLECULAR BIOLOGY, 2007, 373 (01) : 219 - 231