Yu L, Gunasekera A H, Mack J, Olejniczak E T, Chovan L E, Ruan X, Towne D L, Lerner C G, Fesik S W
Pharmaceutical Discovery Division, Abbott Park, IL, 60064-6098, USA.
J Mol Biol. 2001 Aug 17;311(3):593-604. doi: 10.1006/jmbi.2001.4894.
Streptococcus pneumoniae is a major human pathogen that causes high mortality and morbidity rates and has developed resistance to many antibiotics. The genome of S. pneumoniae has recently been completely sequenced revealing many genes encoding hypothetical proteins of unknown function. We have found that the gene encoding one such conserved protein, SP14.3, is essential for growth of S. pneumonia. Since it is essential, SP14.3 represents a potential target for drug discovery. Here, we describe the three-dimensional solution structure of SP14.3 as determined by NMR spectroscopy. The structure consists of two domains each with an alpha/beta-fold. The N-terminal domain contains two alpha-helices and a three-stranded beta-sheet, while the C-terminal domain is composed of one alpha-helix and a five-stranded beta-sheet. The N-terminal domain of the protein contains a highly negatively charged surface and resembles the fold of the N-terminal domain of Thermus thermophilus ribosomal protein S3. The C-terminal domain has a protein fold similar to human small nuclear ribonucleoprotein Sm D3 and Haloarcula marismortui ribosomal protein L21E. The two domains of the protein tumble in solution overall as a whole with an overall molecular rotational correlation time (tau(m)) of 12.9 ns at 25 degrees C. The relative orientation of the two domains is not defined by the nuclear Overhauser effect data. Indeed, residual dipolar couplings and the structure calculations indicate that the relative orientation of the two domains is not rigidly oriented with respect to one another in solution.
肺炎链球菌是一种主要的人类病原体,可导致高死亡率和高发病率,并且已对多种抗生素产生耐药性。肺炎链球菌的基因组最近已被完全测序,揭示了许多编码功能未知的假定蛋白的基因。我们发现,编码一种这样的保守蛋白SP14.3的基因对肺炎链球菌的生长至关重要。由于其至关重要,SP14.3代表了药物研发的一个潜在靶点。在此,我们描述了通过核磁共振光谱法测定的SP14.3的三维溶液结构。该结构由两个结构域组成,每个结构域都具有α/β折叠。N端结构域包含两个α螺旋和一个三链β折叠,而C端结构域由一个α螺旋和一个五链β折叠组成。该蛋白的N端结构域含有一个高度带负电荷的表面,类似于嗜热栖热菌核糖体蛋白S3的N端结构域的折叠。C端结构域具有与人小核核糖核蛋白Sm D3和嗜盐碱红菌核糖体蛋白L21E相似的蛋白折叠。该蛋白的两个结构域在溶液中整体翻滚,在25℃时整体分子旋转相关时间(τm)为12.9纳秒。两个结构域的相对取向未由核Overhauser效应数据确定。实际上,剩余偶极耦合和结构计算表明,在溶液中两个结构域的相对取向并非彼此刚性取向。