Petrella Robert J, Karplus Martin
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
Proteins. 2004 Mar 1;54(4):716-26. doi: 10.1002/prot.10577.
Although most side-chain torsion angles correspond to low-energy rotameric positions, deviations occur with significant frequency. One striking example arises in Trp residues, which have an important role in stabilizing protein structures because of their size and mixed hydrophobic/hydrophilic character. Ten percent of Trp side-chains have unexplained conformations with chi(2) near 0 degrees instead of the expected 90 degrees. The current work is a structural and energetic analysis of these conformations. It is shown that many Trp residues with these orientations are stabilized by three-center carbon-donor hydrogen bonds of the form C-H...X...H-C, where X is a polar hydrogen-bond acceptor in the environment of the side-chain. The bridging hydrogen bonds occur both within the Trp side-chain and between the side-chain and the local protein backbone. Free energy maps of an isolated Trp residue in an explicit water environment show a minimum corresponding to the off-rotamer peak observed in the crystallographic data. Bridging carbon-donor hydrogen bonds are also shown to stabilize on-rotamer Trp conformations, and similar bridging hydrogen bonds also stabilize some off-rotamer Asp conformations. The present results suggest a previously unrecognized role for three-center carbon-donor hydrogen bonds in protein structures and support the view that the off-rotamer Trp side-chain orientations are real rather than artifacts of crystallographic refinements. Certain of the off-rotamer Trp conformations appear to have a functional role.
尽管大多数侧链扭转角对应于低能量的旋转异构体位置,但仍会频繁出现偏差。一个显著的例子出现在色氨酸(Trp)残基中,由于其大小以及疏水性/亲水性兼具的特性,色氨酸在稳定蛋白质结构方面起着重要作用。10%的色氨酸侧链具有无法解释的构象,其χ(2)接近0度而非预期的90度。当前的工作是对这些构象进行结构和能量分析。结果表明,许多具有这些取向的色氨酸残基通过C-H...X...H-C形式的三中心碳供体氢键得以稳定,其中X是侧链环境中的极性氢键受体。桥连氢键既出现在色氨酸侧链内部,也出现在侧链与局部蛋白质主链之间。在明确水环境中孤立色氨酸残基的自由能图显示出一个最小值,对应于晶体学数据中观察到的非旋转异构体峰。桥连碳供体氢键也被证明能稳定旋转异构体的色氨酸构象,类似的桥连氢键也能稳定一些非旋转异构体的天冬氨酸(Asp)构象。目前的结果表明三中心碳供体氢键在蛋白质结构中具有此前未被认识到的作用,并支持这样一种观点,即非旋转异构体色氨酸侧链取向是真实存在的,而非晶体学精修的假象。某些非旋转异构体色氨酸构象似乎具有功能作用。