Abstract
▪ Abstract Early genetic studies identified the Escherichia coli groES and groEL genes because mutations in them blocked the growth of bacteriophages λ and T4. Subsequent genetic and biochemical analyses have shown that GroES and GroEL constitute a chaperonin machine, absolutely essential for E. coli growth, because it is needed for the correct folding of many of its proteins. In spite of very little sequence identity to GroES, the bacteriophage T4-encoded Gp31 protein and the bacteriophage RB49-encoded CocO protein are bona fide GroEL cochaperonins, even capable of substituting for GroES in E. coli growth. A major functional distinction is that only Gp31 and CocO can assist GroEL in the correct folding of Gp23, the major bacteriophage capsid protein. Conserved structural features between CocO and Gp31, which are absent from GroES, highlight their potential importance in specific cochaperonin function.
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Dates
Type | When |
---|---|
Created | 23 years, 1 month ago (July 27, 2002, 7:43 a.m.) |
Deposited | 3 years, 10 months ago (Oct. 12, 2021, 2:14 a.m.) |
Indexed | 1 month, 4 weeks ago (July 4, 2025, 7:47 a.m.) |
Issued | 24 years, 9 months ago (Dec. 1, 2000) |
Published | 24 years, 9 months ago (Dec. 1, 2000) |
Published Print | 24 years, 9 months ago (Dec. 1, 2000) |
@article{Ang_2000, title={GENETIC ANALYSIS OF BACTERIOPHAGE-ENCODED COCHAPERONINS}, volume={34}, ISSN={1545-2948}, url={http://dx.doi.org/10.1146/annurev.genet.34.1.439}, DOI={10.1146/annurev.genet.34.1.439}, number={1}, journal={Annual Review of Genetics}, publisher={Annual Reviews}, author={Ang, Debbie and Keppel, France and Klein, Gracjana and Richardson, Alexandra and Georgopoulos, Costa}, year={2000}, month=dec, pages={439–456} }