We found that a cold acclimation protein from an ice-nucleating bacterium,
Patoea ananas KUIN-3, has refolding activity on frozen denatured protein. B
ased on a SDS-PAGE analysis, we confirmed that the cold shock-treated cells
of strain KUIN-3 could produce some cold acclimation proteins that inhibit
their syntheses by the addition of chloramphenicol during the cold acclima
tion. Among such proteins, Hsc25 had refolding activity similar to GroELS.
Hsc25 was purified to apparent homogeneity by (NH4)(2)SO4 precipitation and
some chromatographies. The purified Hsc25 was composed of 8 subunits of 25
,000 each with a molecular mass of 200,000 and had refolding activity again
st denatured enzymes, which were denatured by heat-treatment at 100 degrees
C, cryopreservation at -20 degreesC, or guanidine hydrochloride, in a manne
r similar to GroELS. The N-terminal sequence of Hsc25 was Met-Arg-Ala-Ser-T
hr-Tyr-His-Ala-Ala-Arg-. Furthermore, Hsc25 had a high level of activity at
low temperature (12 degreesC). Also, the dissociation constants, KD (M) as
the binding specificity for enolase, mutarotase, isocitrate dehydrogenase,
and lactate dehydrogenase were 1.82 x 10(-10), 4.35 x 10(-9), 8.98 x 10(-1
2), and 3.05 x 10(-11), respectively. The affinity of Hsc25 for frozen dana
tured enzymes was higher than the affinity for heat denatured enzymes when
compared with the affinity of GroEL. These results are the first report on
the characterization of a purified chaperon that was induced by cold acclim
ation.