Institute of Microbial Technology, Council of Scientific and Industrial Research, Sector 39A, Chandigarh 160036, India.
J Biol Chem. 2010 Nov 5;285(45):34309-18. doi: 10.1074/jbc.M110.135822. Epub 2010 Sep 2.
The PhoP and PhoR proteins from Mycobacterium tuberculosis form a highly specific two-component system that controls expression of genes involved in complex lipid biosynthesis and regulation of unknown virulence determinants. The several functions of PhoP are apportioned between a C-terminal effector domain (PhoPC) and an N-terminal receiver domain (PhoPN), phosphorylation of which regulates activation of the effector domain. Here we show that PhoPN, on its own, demonstrates PhoR-dependent phosphorylation. PhoPC, the truncated variant bearing the DNA binding domain, binds in vitro to the target site with affinity similar to that of the full-length protein. To complement the finding that residues spanning Met(1) to Arg(138) of PhoP constitute the minimal functional PhoPN, we identified Arg(150) as the first residue of the distal PhoPC domain capable of DNA binding on its own, thereby identifying an interdomain linker. However, coupling of two functional domains together in a single polypeptide chain is essential for phosphorylation-coupled DNA binding by PhoP. We discuss consequences of tethering of two domains on DNA binding and demonstrate that linker length and not individual residues of the newly identified linker plays a critical role in regulating interdomain interactions. Together, these results have implications for the molecular mechanism of transmission of conformation change associated with phosphorylation of PhoP that results in the altered DNA recognition by the C-terminal domain.
结核分枝杆菌的 PhoP 和 PhoR 蛋白形成一个高度特异的双组分系统,该系统控制参与复杂脂质生物合成和未知毒力决定因素调控的基因表达。PhoP 的几个功能分配给 C 端效应结构域(PhoPC)和 N 端受体结构域(PhoPN),磷酸化调节效应结构域的激活。在这里,我们表明 PhoPN 本身就表现出 PhoR 依赖性磷酸化。PhoPC 是带有 DNA 结合结构域的截断变体,在体外与靶位点结合的亲和力与全长蛋白相似。为了补充 PhoP 的残基跨越 Met(1)到 Arg(138)构成最小功能 PhoPN 的发现,我们确定 Arg(150)是能够独立结合 DNA 的远端 PhoPC 结构域的第一个残基,从而鉴定出一个结构域间连接体。然而,在单个多肽链中将两个功能结构域偶联在一起对于 PhoP 的磷酸化偶联 DNA 结合是必不可少的。我们讨论了将两个结构域系在 DNA 结合上的后果,并证明了连接体长度而不是新鉴定的连接体的单个残基在调节结构域间相互作用中起着关键作用。总之,这些结果对磷酸化引起的 PhoP 构象变化的传递的分子机制具有影响,导致 C 末端结构域对 DNA 的识别改变。