Vlassi M, Cesareni G, Kokkinidis M
NCSR "Demokritos", Ag Paraskevi Attikis, Athens, GR-15130, Greece.
J Mol Biol. 1999 Jan 15;285(2):817-27. doi: 10.1006/jmbi.1998.2342.
The hydrophobic core packing in four-alpha-helical bundles appears to be crucial for stabilizing the protein structure. To examine the structural basis of hydrophobic stabilization, the crystal structures of the Leu-->Val (L41V) and Leu-->Ala (L41A) substitutions of the core residue Leu41 of the ROP protein have been determined. Both substitutions are destabilizing and lead to formation of cavities. The main responses to mutations are the collapse of the central part of the alpha-helix containing the site of mutation, shifts of internal water molecules, and in L41A, the trapping of a water molecule in a cavity engineered by the mutation. For both mutants, these effects limit the increase in cavity size to less than 10 A3, while an increase of 37 A3 and 100 A3 is expected for L41V and L41A, respectively, in the absence of any cavity size reducing effects. The mobility of internal side-chains is increased and in L41A, it reaches values typical for exposed residues. A parameter (Deltanh) is introduced as a measure of the number of van der Waals contacts lost. For ROP, barnase and T4 lysozyme mutants, there is a good correlation between Deltanh and the free energy of unfolding DeltaDeltaG relative to wild-type protein. The Deltanh value turns out to be more suitable for analysing structural and energetic responses to mutation than other parameter, such as cavity volumes and packing densities. Possible evolutionary implications of the DeltaDeltaG versus Deltanh relationship are discussed.
四螺旋束中的疏水核心堆积对于稳定蛋白质结构似乎至关重要。为了研究疏水稳定性的结构基础,已确定了ROP蛋白核心残基Leu41的Leu→Val(L41V)和Leu→Ala(L41A)取代的晶体结构。这两种取代都会使结构不稳定并导致空洞形成。对突变的主要响应是包含突变位点的α螺旋中心部分的塌陷、内部水分子的移动,并且在L41A中,一个水分子被困在由突变设计的空洞中。对于这两种突变体,这些效应将空洞大小的增加限制在小于10 ų,而在没有任何减小空洞大小效应的情况下,L41V和L41A预计分别增加37 ų和100 ų。内部侧链的流动性增加,并且在L41A中,其达到暴露残基典型的值。引入一个参数(Δtanh)作为衡量范德华接触丧失数量的指标。对于ROP、芽孢杆菌RNA酶和T4溶菌酶突变体,Δtanh与相对于野生型蛋白的解折叠自由能ΔΔG之间存在良好的相关性。结果表明,与其他参数(如空洞体积和堆积密度)相比,Δtanh值更适合分析对突变的结构和能量响应。讨论了ΔΔG与Δtanh关系可能的进化意义。