Tzeng Y L, Zhou X Z, Hoch J A
Division of Cellular Biology, Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California 92037, USA.
J Biol Chem. 1998 Sep 11;273(37):23849-55. doi: 10.1074/jbc.273.37.23849.
The initiation of sporulation in Bacillus subtilis is regulated by the phosphorelay, a complex signal transduction system consisting of kinases and response regulators. The key component of a phosphorelay is the phosphotransferase, which recognizes two response regulators and transfers a phosphoryl group between them. In this reaction, the phosphoryl of one response regulator is transferred to a histidine on the phosphotransferase before phosphorylating an aspartate of the second response regulator. The phosphorylated histidine on the Spo0B phosphotransferase was found to be His30. Site-directed mutation of His30 to alanine destroyed its phosphotransferase activity in vitro and strains constructed with this mutation were unable to sporulate. None of the other 10 histidines of Spo0B was implicated in the phosphotransferase reaction. A structurally vulnerable site, histidine 23, was also identified through the mutational study. The His30 of Spo0B resides in a domain with little sequence homology to functionally equivalent domains in the phosphorelays of other bacterial and yeast systems, suggesting that the two types of phosphotransfer domains evolved convergently.
枯草芽孢杆菌中芽孢形成的起始由磷酸化信号转导途径调控,这是一个由激酶和响应调节因子组成的复杂信号转导系统。磷酸化信号转导途径的关键成分是磷酸转移酶,它识别两种响应调节因子并在它们之间转移磷酸基团。在这个反应中,一种响应调节因子的磷酸基团先转移到磷酸转移酶上的组氨酸上,然后再磷酸化第二种响应调节因子的天冬氨酸。已发现Spo0B磷酸转移酶上磷酸化的组氨酸是His30。将His30定点突变为丙氨酸会在体外破坏其磷酸转移酶活性,构建的带有这种突变的菌株无法形成芽孢。Spo0B的其他10个组氨酸均未参与磷酸转移酶反应。通过突变研究还鉴定出一个结构上易变的位点,即组氨酸23。Spo0B的His30位于一个与其他细菌和酵母系统的磷酸化信号转导途径中功能等效结构域序列同源性很低的结构域中,这表明这两种类型的磷酸转移结构域是趋同进化的。