Yifrach O, Horovitz A
Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.
J Mol Biol. 1994 Oct 28;243(3):397-401. doi: 10.1006/jmbi.1994.1667.
Sequence homology between GroEL and Escherichia coli DNA polymerase I, together with the fact that both proteins bind adenine nucleotides, suggested to us that they may have a similar nucleotide binding site. Arg196 in GroEL corresponds to Arg425 in DNA polymerase I, which is near its nucleotide binding site. Here, we report the striking effects of the mutation Arg196-->Ala in GroEL on its kinetic and allosteric properties with respect to ATP. The mutation reduces positive co-operativity in ATP hydrolysis found in wild-type GroEL. It also gives rise to strong substrate (ATP) inhibition, which is not apparent in the wild-type protein. The dual effect of the mutation reflects the presence of two lines of allosteric communication between ATP binding sites in GroEL and suggests the existence of nested co-operativity.
GroEL与大肠杆菌DNA聚合酶I之间的序列同源性,以及这两种蛋白质都能结合腺嘌呤核苷酸这一事实,让我们推测它们可能具有相似的核苷酸结合位点。GroEL中的Arg196对应于DNA聚合酶I中的Arg425,后者靠近其核苷酸结合位点。在此,我们报告了GroEL中Arg196突变为Ala对其与ATP相关的动力学和别构性质的显著影响。该突变降低了野生型GroEL中ATP水解的正协同性。它还导致了强烈的底物(ATP)抑制,这在野生型蛋白质中并不明显。该突变的双重效应反映了GroEL中ATP结合位点之间存在两条别构通讯线路,并提示存在嵌套协同性。