Chaperonin-affected refolding of α-lactalbumin:: Effects of nucleotides and the Co-chaperonin GroES

被引:28
作者
Makio, T [1 ]
Arai, M [1 ]
Kuwajima, K [1 ]
机构
[1] Univ Tokyo, Sch Sci, Dept Phys, Bunkyo Ku, Tokyo 1130033, Japan
关键词
molecular chaperone; protein folding; cooperativity; stopped-flow; alpha-lactalbumin;
D O I
10.1006/jmbi.1999.3142
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
We have studied how nucleotides (ADP, AMP-PNP, and ATP) and the co-chaperonin GroES influence the GroEL-affected refolding of apo-alpha-lactalbumin. The refolding reactions induced by stopped-flow pH jumps were monitored by alpha-lactalbumin tryptophan fluorescence. The simple single-exponential character of the free-refolding kinetics of the protein allowed us to quantitatively analyze the kinetic traces of the GroEL-affected refolding with the aid of computer simulations, and to obtain the best-fit parameters for binding between GroEL and the refolding intermediate of alpha-lactalbumin by the non-linear least-squares method. When GroES was absent, the interaction between GroEL and alpha-lactalbumin could be well represented by a "cooperative-binding" model in which GroEL has two binding sites for alpha-lactalbumin with the affinity of the second site being tenfold weaker than that of the first, so that there is negative cooperativity between the two sites. The affinity between GroEL and a-lactalbumin was significantly reduced when ATP was present, while ADP and AMP-PNP did not alter the affinity. A comparison of this result with those reported previously for other target proteins suggests a remarkable adjustability of the GroEL 14-mer with respect to the nucleotide-induced reduction of affinity. When GroES was present, ATP as well as ADP and AMP-PNP were effective in reducing the affinity between GroEL and the refolding intermediate of alpha-lactalbumin. The affinity at a saturating concentration of ADP or AMP-PNP was about ten times lower than with GroEL alone. The ADP concentration at which the acceleration of the GroEL/ES-affected refolding of alpha LA was observed, was higher than the concentration at which the nucleotide-induced formation of the GroEL/ES complex took place. These results indicate that GroEL/ES complex formation itself is not enough to reduce the affinity for alpha-lactalbummin, and that further binding of the nucleotide to the GroEL/ES complex is required to reduce the affinity. (C) 1999 Academic Press.
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收藏
页码:125 / 137
页数:13
相关论文
共 42 条
[1]   Calorimetric observation of a GroEL-protein binding reaction with little contribution of hydrophobic interaction [J].
Aoki, K ;
Taguchi, H ;
Shindo, Y ;
Yoshida, M ;
Ogasahara, K ;
Yutani, K ;
Tanaka, N .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (51) :32158-32162
[2]   Rapid formation of a molten globule intermediate in refolding of alpha-lactalbumin [J].
Arai, M ;
Kuwajima, K .
FOLDING & DESIGN, 1996, 1 (04) :275-287
[3]  
Ayling A, 1996, PROTEIN SCI, V5, P478
[4]   Nucleotide-dependent complex formation between the Escherichia coli chaperonins GroEL and GroES studied under equilibrium conditions [J].
Behlke, J ;
Ristau, O ;
Schonfeld, HJ .
BIOCHEMISTRY, 1997, 36 (17) :5149-5156
[5]   The 2.4 angstrom crystal structure of the bacterial chaperonin GroEL complexed with ATP gamma S [J].
Boisvert, DC ;
Wang, JM ;
Otwinowski, Z ;
Horwich, AL ;
Sigler, PB .
NATURE STRUCTURAL BIOLOGY, 1996, 3 (02) :170-177
[6]   THE CRYSTAL-STRUCTURE OF THE BACTERIAL CHAPERONIN GROEL AT 2.8-ANGSTROM [J].
BRAIG, K ;
OTWINOWSKI, Z ;
HEGDE, R ;
BOISVERT, DC ;
JOACHIMIAK, A ;
HORWICH, AL ;
SIGLER, PB .
NATURE, 1994, 371 (6498) :578-586
[7]   CONFORMATIONAL VARIABILITY IN THE REFINED STRUCTURE OF THE CHAPERONIN GROEL AT 2.8 ANGSTROM RESOLUTION [J].
BRAIG, K ;
ADAMS, PD ;
BRUNGER, AT .
NATURE STRUCTURAL BIOLOGY, 1995, 2 (12) :1083-1094
[8]   DETERMINATION OF THE DEAD TIME OF A STOPPED-FLOW FLUOROMETER [J].
BRISSETTE, P ;
BALLOU, DP ;
MASSEY, V .
ANALYTICAL BIOCHEMISTRY, 1989, 181 (02) :234-238
[9]   GROE FACILITATES REFOLDING OF CITRATE SYNTHASE BY SUPPRESSING AGGREGATION [J].
BUCHNER, J ;
SCHMIDT, M ;
FUCHS, M ;
JAENICKE, R ;
RUDOLPH, R ;
SCHMID, FX ;
KIEFHABER, T .
BIOCHEMISTRY, 1991, 30 (06) :1586-1591
[10]   The Hsp70 and Hsp60 chaperone machines [J].
Bukau, B ;
Horwich, AL .
CELL, 1998, 92 (03) :351-366