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P Dulin

Publications and source records attributed to P Dulin.

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The lower hydrolysis of ATP by the stress protein GroEL is a major factor responsible for the diminished chaperonin activity at low temperature.

The chaperonins GroEL and GroES were shown to facilitate the refolding of urea-unfolded rhodanese in an ATP-dependent process at 25 or 37 degrees C. A diminished chaperonin activity was observed at 10 degrees C, however. At low temperature, GroEL retains its ability to form a complex with urea-unfolded rhodanese or with GroES. GroEL is also able to bind ATP at 10 degrees C. Interestingly, the ATPase activity of GroEL was highly decreased at low temperatures. Hydrolysis of ATP by GroEL was 60% less at 10 degrees C than at 25 degrees C. We conclude that the reduced hydrolysis of ATP by GroEL is a major but perhaps not the only factor responsible for the diminished chaperonin activity at 10 degrees C. GroEL may function primarily at higher temperatures in which the ability of GroEL to hydrolyze ATP is not compromised.

Adenosine Triphosphate↗

The ATPase activity of chaperonin GroEL is highly stimulated at elevated temperatures.

The chaperonin GroEL is a heat-shock protein that stabilizes folding intermediates by forming binary complexes. The release of bound polypeptides as active proteins requires ATP hydrolysis by GroEL. The ability of GroEL to support the folding of urea-unfolded rhodanese and to hydrolyze ATP was investigated at high temperatures. We found that the chaperonin-mediated folding of rhodanese and the ATPase activity of GroEL are temperature dependent. The GroEL ATPase activity, however, increases very strongly over the range of temperatures that is physiologically relevant for Escherichia coli growth. Further, GroES partially suppresses the GroEL ATPase activity in the same temperature range.

Adenosine Triphosphatases↗