Kay M S, Ramos C H, Baldwin R L
Department of Biochemistry, Stanford University Medical Center, Stanford, CA 94305-5307, USA.
Proc Natl Acad Sci U S A. 1999 Mar 2;96(5):2007-12. doi: 10.1073/pnas.96.5.2007.
On exposure to mildly acidic conditions, apomyoglobin forms a partially folded intermediate, I. The A, B, G, and H helices are significantly structured in this equilibrium intermediate, whereas the remainder of the protein is largely unfolded. We report here the effects of mutations at helix pairing sites on the stability of I in three classes of mutants that: (i) truncate hydrophobic side chains in native helix packing sites, (ii) truncate hydrophobic side chains not involved in interhelical contacts, and (iii) extend hydrophobic side chains at residues not involved in interhelical contacts. Class I mutants significantly decrease the stability and cooperativity of folding of the intermediate. Class II and III mutants show smaller effects on stability and have little effect on cooperativity. Qualitatively similar results to those found in I were obtained for all three classes of mutants in native myoglobin (N), demonstrating that hydrophobic burial is fairly specific to native helix packing sites in I as well as in N. These results suggest that hydrophobic burial along native-like interhelical contacts is important for the formation of the cooperatively folded intermediate.
在暴露于轻度酸性条件下时,脱辅基肌红蛋白会形成一种部分折叠的中间体I。在这种平衡中间体中,A、B、G和H螺旋具有显著的结构,而蛋白质的其余部分则基本未折叠。我们在此报告了螺旋配对位点突变对三类突变体中I稳定性的影响,这三类突变体分别是:(i) 在天然螺旋堆积位点截断疏水侧链;(ii) 截断不参与螺旋间接触的疏水侧链;(iii) 在不参与螺旋间接触的残基处延长疏水侧链。I类突变体显著降低了中间体折叠的稳定性和协同性。II类和III类突变体对稳定性的影响较小,对协同性几乎没有影响。对于天然肌红蛋白(N)中的所有三类突变体,都获得了与在I中发现的定性相似的结果,这表明疏水埋藏对于I以及N中的天然螺旋堆积位点相当特异。这些结果表明,沿着类似天然的螺旋间接触进行疏水埋藏对于协同折叠中间体的形成很重要。