Aviles F J, Chapman G E, Kneale G G, Crane-Robinson C, Bradbury E M
Eur J Biochem. 1978 Aug 1;88(2):363-71. doi: 10.1111/j.1432-1033.1978.tb12457.x.
Treatment of chicken erythrocyte histone H5 with trypsin in a high-ionic-strength medium results in very rapid initial digestion and the formation of a 'limiting' resistant product peptide. Under these solution conditions the H5 molecule is maximally folded by spectroscopic criteria and it is concluded that the resistant peptide, GH5, represents a globular folded region of the molecule whilst the rapidly digested parts are disordered. The peptide GH5 is shown to comprise the sequence 22-100. In support of this conclusion it is shown that whilst intact histone H5 is hydrodynamically far from being a compact globular shape, peptide GH5 is approximately spherical by hydrodynamic and scattering criteria. Further more, peptide GH5 retains all the alpha-helical structure of intact H5 (circular dichroism) and appears to also maintain all the tertiary structure (nuclear magnetic resonance). It follows that in solution at high ionic strength, histone H5 consists of three domains: an N-terminal disordered region 1-21, a compact globular central domain 22-100 and a long disordered C-terminal chain 101-185. Structural parallels are drawn with the three-domain structure of the histone H1 molecule.
在高离子强度介质中用胰蛋白酶处理鸡红细胞组蛋白H5,会导致非常快速的初始消化并形成一种“极限”抗性产物肽。在这些溶液条件下,根据光谱标准,H5分子处于最大程度折叠状态,并且得出结论,抗性肽GH5代表该分子的一个球状折叠区域,而快速消化的部分是无序的。已证明肽GH5包含22 - 100的序列。为支持这一结论,研究表明,虽然完整的组蛋白H5在流体动力学上远非紧密的球状形状,但根据流体动力学和散射标准,肽GH5近似球形。此外,肽GH5保留了完整H5的所有α - 螺旋结构(圆二色性),并且似乎还维持了所有的三级结构(核磁共振)。由此可见,在高离子强度溶液中,组蛋白H5由三个结构域组成:N端无序区域1 - 21、紧密球状中央结构域22 - 100和长无序C端链101 - 185。文中还绘制了与组蛋白H1分子三结构域结构的结构相似性。