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Structure to function prediction of hypothetical protein KPN_00953 (Ycbk) from Klebsiella pneumoniae MGH 78578 highlights possible role in cell wall metabolism

机译:肺炎克雷伯菌MGH 78578假想蛋白KPN_00953(Ycbk)的功能预测功能突显了其在细胞壁代谢中的作用

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Background Klebsiella pneumoniae plays a major role in causing nosocomial infection in immunocompromised patients. Medical inflictions by the pathogen can range from respiratory and urinary tract infections, septicemia and primarily, pneumonia. As more K. pneumoniae strains are becoming highly resistant to various antibiotics, treatment of this bacterium has been rendered more difficult. This situation, as a consequence, poses a threat to public health. Hence, identification of possible novel drug targets against this opportunistic pathogen need to be undertaken. In the complete genome sequence of K. pneumoniae MGH 78578, approximately one-fourth of the genome encodes for hypothetical proteins (HPs). Due to their low homology and relatedness to other known proteins, HPs may serve as potential, new drug targets. Results Sequence analysis on the HPs of K. pneumoniae MGH 78578 revealed that a particular HP termed KPN_00953 (YcbK) contains a M15_3 peptidases superfamily conserved domain. Some members of this superfamily are metalloproteases which are involved in cell wall metabolism. BLASTP similarity search on KPN_00953 (YcbK) revealed that majority of the hits were hypothetical proteins although two of the hits suggested that it may be a lipoprotein or related to twin-arginine translocation (Tat) pathway important for transport of proteins to the cell membrane and periplasmic space. As lipoproteins and other components of the cell wall are important pathogenic factors, homology modeling of KPN_00953 was attempted to predict the structure and function of this protein. Three-dimensional model of the protein showed that its secondary structure topology and active site are similar with those found among metalloproteases where two His residues, namely His169 and His209 and an Asp residue, Asp176 in KPN_00953 were found to be Zn-chelating residues. Interestingly, induced expression of the cloned KPN_00953 gene in lipoprotein-deficient E. coli JE5505 resulted in smoother cells with flattened edges. Some cells showed deposits of film-like material under scanning electron microscope. Conclusions We postulate that KPN_00953 is a Zn metalloprotease and may play a role in bacterial cell wall metabolism. Structural biology studies to understand its structure, function and mechanism of action pose the possibility of utilizing this protein as a new drug target against K. pneumoniae in the future.
机译:背景技术肺炎克雷伯菌在导致免疫功能低下患者的医院感染中起主要作用。病原体造成的医学伤害可能包括呼吸道和泌尿道感染,败血病,主要是肺炎。随着更多的肺炎克雷伯氏菌菌株对各种抗生素变得高度耐药,这种细菌的治疗变得更加困难。结果,这种情况对公共卫生构成了威胁。因此,需要针对这种机会病原体鉴定可能的新型药物靶标。在肺炎克雷伯氏菌MGH 78578的完整基因组序列中,大约四分之一的基因组编码假想蛋白质(HPs)。由于其与其他已知蛋白质的低同源性和相关性,HP可以作为潜在的新药物靶标。结果对肺炎克雷伯菌MGH 78578的HP进行的序列分析显示,称为KPN_00953(YcbK)的特定HP包含M15_3肽酶超家族保守域。该超家族的一些成员是金属蛋白酶,其参与细胞壁代谢。在KPN_00953(YcbK)上进行的BLASTP相似性搜索显示,大多数命中是假设的蛋白质,尽管其中两个命中表明它可能是脂蛋白或与双精氨酸易位(Tat)通路有关,该途径对于将蛋白转运至细胞膜和周质空间。由于脂蛋白和细胞壁的其他成分是重要的致病因素,因此尝试了KPN_00953的同源性建模来预测该蛋白的结构和功能。蛋白质的三维模型显示其二级结构拓扑和活性位点与金属蛋白酶相似,其中两个His残基His169和His209和Asp残基,KPN_00953中的Asp176被发现是锌螯合残基。有趣的是,克隆的KPN_00953基因在缺乏脂蛋白的大肠杆菌JE5505中的诱导表达导致边缘更平坦的细胞更加平滑。在扫描电子显微镜下,一些细胞显示出膜状物质的沉积物。结论我们推测KPN_00953是一种锌金属蛋白酶,可能在细菌细胞壁代谢中起作用。为了了解其结构,功能和作用机理而进行的结构生物学研究提出了将来将该蛋白用作抗肺炎克雷伯菌的新药物靶标的可能性。

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