Dixit Purushottam D, Weikl Thomas R
Max Planck Institute of Colloids and Interfaces, Theory Department, Potsdam, Germany.
Proteins. 2006 Jul 1;64(1):193-7. doi: 10.1002/prot.20976.
The folding rates of two-state proteins have been found to correlate with simple measures of native-state topology. The most prominent among these measures is the relative contact order (CO), which is the average CO, or localness, of all contacts in the native protein structure, divided by the chain length. Here, we test whether such measures can be generalized to capture the effect of chain crosslinks on the folding rate. Crosslinks change the chain connectivity and therefore also the localness of some of the native contacts. These changes in localness can be taken into account by the graph-theoretical concept of effective contact order (ECO). The relative ECO, however, the natural extension of the relative CO for proteins with crosslinks, overestimates the changes in the folding rates caused by crosslinks. We suggest here a novel measure of native-state topology, the relative logCO, and its natural extension, the relative logECO. The relative logCO is the average value for the logarithm of the CO of all contacts, divided by the logarithm of the chain length. The relative log(E)CO reproduces the folding rates of a set of 26 two-state proteins without crosslinks with essentially the same high correlation coefficient as the relative CO. In addition, it also captures the folding rates of eight two-state proteins with crosslinks.
已发现两态蛋白质的折叠速率与天然态拓扑结构的简单度量相关。其中最显著的度量是相对接触序(CO),它是天然蛋白质结构中所有接触的平均CO或局部性,除以链长。在此,我们测试此类度量是否可推广以捕捉链交联对折叠速率的影响。交联会改变链的连通性,因此也会改变一些天然接触的局部性。局部性的这些变化可通过有效接触序(ECO)的图论概念来考虑。然而,相对ECO(即具有交联的蛋白质的相对CO的自然扩展)高估了交联引起的折叠速率变化。我们在此提出一种天然态拓扑结构的新度量,即相对对数CO及其自然扩展,相对对数ECO。相对对数CO是所有接触的CO的对数的平均值,除以链长的对数。相对对数ECO重现了一组26个无交联的两态蛋白质的折叠速率,其相关系数与相对CO基本相同且很高。此外,它还捕捉了八个有交联的两态蛋白质的折叠速率。