Dunne Matthew, Leicht Stefan, Krichel Boris, Mertens Haydyn D T, Thompson Andrew, Krijgsveld Jeroen, Svergun Dmitri I, Gómez-Torres Natalia, Garde Sonia, Uetrecht Charlotte, Narbad Arjan, Mayer Melinda J, Meijers Rob
From the European Molecular Biology Laboratory, Notkestrasse 85, 22607 Hamburg, Germany.
the European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany.
J Biol Chem. 2016 Mar 4;291(10):4882-93. doi: 10.1074/jbc.M115.671172. Epub 2015 Dec 18.
Bacteriophages produce endolysins, which lyse the bacterial host cell to release newly produced virions. The timing of lysis is regulated and is thought to involve the activation of a molecular switch. We present a crystal structure of the activated endolysin CTP1L that targets Clostridium tyrobutyricum, consisting of a complex between the full-length protein and an N-terminally truncated C-terminal cell wall binding domain (CBD). The truncated CBD is produced through an internal translation start site within the endolysin gene. Mutants affecting the internal translation site change the oligomeric state of the endolysin and reduce lytic activity. The activity can be modulated by reconstitution of the full-length endolysin-CBD complex with free CBD. The same oligomerization mechanism applies to the CD27L endolysin that targets Clostridium difficile and the CS74L endolysin that targets Clostridium sporogenes. When the CTP1L endolysin gene is introduced into the commensal bacterium Lactococcus lactis, the truncated CBD is also produced, showing that the alternative start codon can be used in other bacterial species. The identification of a translational switch affecting oligomerization presented here has implications for the design of effective endolysins for the treatment of bacterial infections.
噬菌体产生内溶素,内溶素可裂解细菌宿主细胞以释放新产生的病毒粒子。裂解的时间是受调控的,并且被认为涉及一种分子开关的激活。我们展示了靶向酪丁酸梭菌的活化内溶素CTP1L的晶体结构,它由全长蛋白与N端截短的C端细胞壁结合结构域(CBD)之间的复合物组成。截短的CBD是通过内溶素基因内的一个内部翻译起始位点产生的。影响内部翻译位点的突变体会改变内溶素的寡聚状态并降低裂解活性。通过用游离的CBD重构全长内溶素-CBD复合物,其活性可以被调节。相同的寡聚化机制也适用于靶向艰难梭菌的CD27L内溶素和靶向生孢梭菌的CS74L内溶素。当将CTP1L内溶素基因导入共生细菌乳酸乳球菌时,也会产生截短的CBD,这表明该替代起始密码子可在其他细菌物种中使用。此处鉴定出的影响寡聚化的翻译开关对设计用于治疗细菌感染的有效内溶素有启示意义。