a Department of Biotechnology , PES Institute of Technology , Bangalore , India.
J Biomol Struct Dyn. 2015;33(8):1743-55. doi: 10.1080/07391102.2014.969313. Epub 2014 Nov 14.
VNG0128C, a hypothetical protein from Halobacterium NRC-1, was chosen for detailed insilico and experimental investigations. Computational exercises revealed that VNG0128C functions as NAD(+) binding protein. The phylogenetic analysis with the homolog sequences of VNG0128C suggested that it could act as UDP-galactose 4-epimerase. Hence, the VNG0128C sequence was modeled using a suitable template and docking studies were performed with NAD and UDP-galactose as ligands. The binding interactions strongly indicate that VNG0128C could plausibly act as UDP-galactose 4-epimerase. In order to validate these insilico results, VNG0128C was cloned in pUC57, subcloned in pET22b(+), expressed in BL21 cells and purified using nickel affinity chromatography. An assay using blue dextran was performed to confirm the presence of NAD binding domain. To corroborate the epimerase like enzymatic role of the hypothetical protein, i.e. the ability of the enzyme to convert UDP-galactose to UDP-glucose, the conversion of NAD to NADH was measured. The experimental assay significantly correlated with the insilico predictions, indicating that VNG0128C has a NAD(+) binding domain with epimerase activity. Consequently, its key role in nucleotide-sugar metabolism was thus established. Additionally, the work highlights the need for a methodical characterization of hypothetical proteins (less studied class of biopolymers) to exploit them for relevant applications in the field of biology.
VNG0128C,一种来自嗜盐古菌 NRC-1 的假设蛋白,被选为详细的计算机模拟和实验研究对象。计算练习表明,VNG0128C 作为 NAD(+)结合蛋白发挥作用。与 VNG0128C 的同源序列的系统发育分析表明,它可能作为 UDP-半乳糖 4-差向异构酶发挥作用。因此,使用合适的模板对 VNG0128C 序列进行建模,并使用 NAD 和 UDP-半乳糖作为配体进行对接研究。结合相互作用强烈表明,VNG0128C 可能作为 UDP-半乳糖 4-差向异构酶发挥作用。为了验证这些计算机模拟结果,将 VNG0128C 克隆到 pUC57 中,亚克隆到 pET22b(+)中,在 BL21 细胞中表达,并使用镍亲和层析进行纯化。使用蓝色葡聚糖进行的测定用于确认 NAD 结合结构域的存在。为了证实假设蛋白的差向异构酶样酶活性,即酶将 UDP-半乳糖转化为 UDP-葡萄糖的能力,测量了 NAD 向 NADH 的转化。实验测定与计算机模拟预测显著相关,表明 VNG0128C 具有 NAD(+)结合结构域和差向异构酶活性。因此,它在核苷酸糖代谢中的关键作用得到了确立。此外,这项工作强调了对假设蛋白(研究较少的生物聚合物类)进行系统表征的必要性,以将其用于生物学领域的相关应用。