Sundar Shobana, Annaraj David, Selvan Anitha, Biswas Pallavi Guha, Vijayakumaran Reshma, Anishetty Sharmila
Centre for Biotechnology, Anna University, Chennai, 600025, India.
J Mol Model. 2015 Dec;21(12):310. doi: 10.1007/s00894-015-2853-4. Epub 2015 Nov 12.
Antigen85 (Ag85) proteins of Mycobacterium tuberculosis are mycolyl transferases that aid in cell wall biosynthesis. MPT51 (Ag85D) is closely related to Ag85 proteins. We have performed a comparative molecular dynamics (MD) simulation study of Ag85 proteins (Ag85A, Ag85B, and Ag85C) and MPT51. We observe that helix α5, β7-α9 loop, and N-terminal region of helix α9 of Ag85 proteins are mobile, suggestive of lid like movement over the active site. Further, in Ag85B, we observe the proposed scooting mode of the hydrophobic gating residue Phe232. Our simulations also show a similar scooting mode for Phe232 of Ag85A and Trp158 of Ag85C. We also found aromatic residue clusters at the ends of the hydrophobic channel of Ag85 proteins, which may have functional significance. Although MPT51 lacks the tunnel, it has the aromatic clusters. The aromatic cluster region has the ability to bind trehalose. From an immunoinformatics study, a promiscuous linear epitope was identified in MPT51 which could be useful in subunit vaccine studies. Recent studies have shown that a mycobacterial protein HupB, interacts with Ag85 proteins and has a regulatory role in cell wall biogenesis, with implications in growth rate and latency. We performed molecular docking studies of HupB protein with Ag85 proteins and predicted potential sites of interaction in Ag85 proteins. The insights gained through the current study can potentially pave way for newer therapeutic interventions. Graphical Abstract Dynamics of antigen85 proteins and MPT51 from Mycobacterium tuberculosis.
结核分枝杆菌的抗原85(Ag85)蛋白是有助于细胞壁生物合成的分枝菌酸转移酶。MPT51(Ag85D)与Ag85蛋白密切相关。我们对Ag85蛋白(Ag85A、Ag85B和Ag85C)和MPT51进行了比较分子动力学(MD)模拟研究。我们观察到Ag85蛋白的α5螺旋、β7-α9环和α9螺旋的N端区域是可移动的,提示其在活性位点上有类似盖子的运动。此外,在Ag85B中,我们观察到了疏水门控残基苯丙氨酸232的推测的滑动模式。我们的模拟还显示Ag85A的苯丙氨酸232和Ag85C的色氨酸158有类似的滑动模式。我们还在Ag85蛋白疏水通道的末端发现了芳香族残基簇,这可能具有功能意义。虽然MPT51没有通道,但它有芳香族簇。芳香族簇区域有结合海藻糖的能力。通过免疫信息学研究,在MPT51中鉴定出一个通用线性表位,这可能在亚单位疫苗研究中有用。最近的研究表明,一种分枝杆菌蛋白HupB与Ag85蛋白相互作用,并在细胞壁生物合成中具有调节作用,对生长速率和潜伏期有影响。我们对HupB蛋白与Ag85蛋白进行了分子对接研究,并预测了Ag85蛋白中的潜在相互作用位点。通过本研究获得的见解可能为新的治疗干预措施铺平道路。图摘要 结核分枝杆菌抗原85蛋白和MPT51的动力学。