Katoh E, Hatta T, Shindo H, Ishii Y, Yamada H, Mizuno T, Yamazaki T
Structural Biology Unit, National Institute of Agrobiological Resources, Tsukuba, Ibaraki, 305-8602, Japan.
J Mol Biol. 2000 Nov 24;304(2):219-29. doi: 10.1006/jmbi.2000.4170.
YhhP, a small protein of 81 amino acid residues encoded by the yhhP gene in the Escherichia coli database, is implicated in cell division although the precise biological function of this protein has not been yet identified. A variety of microorganisms have similar proteins, all of which contain a common CPxP sequence motif in the N-terminal region. We have determined the three-dimensional solution structure of YhhP by NMR spectroscopy in order to obtain insight into its biological function. It folds into a two-layered alpha/beta-sandwich structure with a betaalphabetaalphabetabeta fold, comprising a mixed four-stranded beta-sheet stacked against two alpha-helices, both of which are nearly parallel to the strands of the beta-sheet. The CPxP motif plays a significant structural role in stabilizing the first helix as a part of the new type N-capping box where the Cys-Pro peptide bond adopts a cis configuration. The structure of YhhP displays a striking resemblance to the C-terminal ribosome-binding domain of translation initiation factor IF3 (IF3C). In addition, the surface charge distribution of the RNA-recognition helix of IF3C is nearly the same as that of the corresponding helix of YhhP. These results suggest a structure-based hypothesis in which binding to an RNA target plays an essential role in the function of this ubiquitous protein.
YhhP是大肠杆菌数据库中由yhhP基因编码的一种含81个氨基酸残基的小蛋白,尽管该蛋白的确切生物学功能尚未明确,但它与细胞分裂有关。多种微生物都有类似的蛋白,所有这些蛋白在N端区域都含有一个共同的CPxP序列基序。为了深入了解YhhP的生物学功能,我们通过核磁共振光谱法测定了它的三维溶液结构。它折叠成一个具有β-α-β-α-β-β折叠的两层α/β三明治结构,由一个混合的四链β折叠片层与两个α螺旋堆叠而成,这两个α螺旋几乎都与β折叠片层的链平行。CPxP基序作为新型N端封端盒的一部分,在稳定第一个螺旋方面发挥着重要的结构作用,其中半胱氨酸-脯氨酸肽键呈顺式构象。YhhP的结构与翻译起始因子IF3(IF3C)的C端核糖体结合结构域惊人地相似。此外,IF3C的RNA识别螺旋的表面电荷分布与YhhP相应螺旋的表面电荷分布几乎相同。这些结果提出了一个基于结构的假说,即与RNA靶标的结合在这种普遍存在的蛋白的功能中起着至关重要的作用。