Ota M, Isogai Y, Nishikawa K
National Institute of Genetics, Mishima, Shizuoka, Japan.
FEBS Lett. 1997 Sep 29;415(2):129-33. doi: 10.1016/s0014-5793(97)01110-1.
Globins have remarkable sequence diversity, and yet maintain a common fold. In spite of the diversity, there are highly-conserved residues at several sites. The conserved residues were examined in terms of the structural stability, by employing the pseudo-energy functions of the structure/sequence compatibility method. The fitness of each residue type to the structural environment was evaluated at seven highly-conserved sites: the Leu (at the B10 site), Phe (CD1), and Leu (F4) residues were found to fit their respective sites due to hydrophobic interactions; Pro (C2) stabilizes the N-terminal edge of an alpha-helical structure; and Phe (CD4) is stabilized by backbone hydrogen-bonding to Phe (CD1). On the other hand, the other two residues, His (E7) and His (F8), are poorly suited to the sites from a structural viewpoint, suggesting that their conservation clearly results from a heme-related functional requirement. The invariant Phe residue (CD1) has been suggested to be important for supporting the heme. The present analysis revealed that this residue is also well suited to the site in terms of energy.
珠蛋白具有显著的序列多样性,但仍保持共同的折叠结构。尽管存在多样性,但在几个位点上有高度保守的残基。通过采用结构/序列兼容性方法的伪能量函数,从结构稳定性方面对保守残基进行了研究。在七个高度保守的位点评估了每种残基类型与结构环境的适配性:亮氨酸(位于B10位点)、苯丙氨酸(CD1)和亮氨酸(F4)残基由于疏水相互作用而与其各自的位点适配;脯氨酸(C2)稳定α-螺旋结构的N端边缘;苯丙氨酸(CD4)通过与苯丙氨酸(CD1)的主链氢键作用而得到稳定。另一方面,从结构角度来看,另外两个残基,即组氨酸(E7)和组氨酸(F8),与这些位点的适配性较差,这表明它们的保守显然源于与血红素相关的功能需求。不变的苯丙氨酸残基(CD1)被认为对支撑血红素很重要。目前的分析表明,就能量而言,该残基也与该位点非常适配。