Singh Dheeraj, Eb Rohitth Raj, Bandhu Amitava
Department of Biotechnology, National Institute of Technology Warangal, Warangal, 506004, Telangana, India.
Appl Biochem Biotechnol. 2025 Jul 3. doi: 10.1007/s12010-025-05299-w.
In-vivo microarray analysis on murine model of Tuberculosis had identified a novel transcriptional regulator MosR, which regulates the expression of ~ 163 genes, many of which are important for intracellular persistence of dormant Mycobacterium tuberculosis. MosR therefore, may be considered as potential target for anti-tuberculosis drug discovery. In this work, this important regulator has been cloned, expressed, purified to homogeneity, and characterized to some extent. MosR is found to cooperatively bind within the ORF of the previous gene rv0347. The environmental conditions for most favorable interaction between MosR and its cognate DNA are determined to be 8.0 pH, 25 mM NaCl, and 25 ℃ temperature. The equilibrium dissociation constant (K) for MosR-DNA interaction is determined to be 0.23 ± 0.02 µM under the optimized conditions. MosR is composed of mostly α-helices with minor β-sheets and β-turns as major secondary structural elements. Interestingly, MosR is found to harbor a highly conserved homeodomain and a long N-terminal arm which might be involved in binding to specific DNA, supported by the predicted three-dimensional structure. The tertiary structure of MosR is found to be stable under different pH and salt concentrations while secondary structure undergoes distinct conformational changes. MosR is unable to maintain its structure and DNA-binding activity at a temperature more than 35 ℃ and forms microaggregate in solution which suggests that it is a moderately thermosensitive protein. These information would be useful for in-vitro screening and validations of inhibitors against MosR in a high throughput manner.
对结核病小鼠模型进行的体内微阵列分析鉴定出一种新型转录调节因子MosR,它调节约163个基因的表达,其中许多基因对休眠结核分枝杆菌在细胞内的持续存在很重要。因此,MosR可被视为抗结核药物研发的潜在靶点。在这项工作中,这个重要的调节因子已被克隆、表达、纯化至均一,并在一定程度上进行了表征。发现MosR在前一个基因rv0347的开放阅读框内协同结合。确定MosR与其同源DNA最有利相互作用的环境条件为pH 8.0、25 mM NaCl和25℃温度。在优化条件下,MosR与DNA相互作用的平衡解离常数(K)确定为0.23±0.02μM。MosR主要由α螺旋组成,次要的β折叠和β转角为主要二级结构元件。有趣的是,通过预测的三维结构发现,MosR含有一个高度保守的同源结构域和一个可能参与与特定DNA结合的长N末端臂。发现MosR的三级结构在不同的pH和盐浓度下是稳定的,而二级结构会发生明显的构象变化。MosR在温度超过35℃时无法维持其结构和DNA结合活性,并在溶液中形成微聚集体,这表明它是一种中度热敏蛋白。这些信息将有助于以高通量方式对针对MosR的抑制剂进行体外筛选和验证。