Domínguez-Gil Teresa, Molina Rafael, Dik David A, Spink Edward, Mobashery Shahriar, Hermoso Juan A
Department of Crystallography and Structural Biology, Institute of Physical Chemistry "Rocasolano", CSIC , 28006 Madrid, Spain.
Department of Chemistry and Biochemistry, University of Notre Dame , Notre Dame, Indiana 46556, United States.
Biochemistry. 2017 Dec 5;56(48):6317-6320. doi: 10.1021/acs.biochem.7b00932. Epub 2017 Nov 16.
Formation of catenanes by proteins is rare, with few known examples. We report herein the X-ray structure of a catenane dimer of lytic transglycosylase SltB1 of Pseudomonas aeruginosa. The enzyme is soluble and exists in the periplasmic space, where it modifies the bacterial cell wall. The catenane dimer exhibits the protein monomers in a noncovalent chain-link arrangement, whereby a stretch of 51 amino acids (to become a loop and three helices) from one monomer threads through the central opening of the structure of the partner monomer. The protein folds after threading in a manner that leaves two helices (α1 and α2) as stoppers to impart stability to the dimer structure. The symmetric embrace by the two SltB1 molecules occludes both active sites entirely, an arrangement that is sustained by six electrostatic interactions between the two monomers. In light of the observation of these structural motifs in all members of Family 3 lytic transglycosylases, catenanes might be present for those enzymes, as well. The dimeric catenane might represent a regulated form of SltB1.
蛋白质形成连环体的情况很少见,已知的例子不多。我们在此报告铜绿假单胞菌溶菌转糖基酶SltB1连环体二聚体的X射线结构。该酶可溶,存在于周质空间,在那里它修饰细菌细胞壁。连环体二聚体以非共价链环排列展示蛋白质单体,其中一个单体的一段51个氨基酸(形成一个环和三个螺旋)穿过伙伴单体结构的中心开口。穿入后蛋白质折叠,留下两个螺旋(α1和α2)作为塞子以赋予二聚体结构稳定性。两个SltB1分子的对称环绕完全封闭了两个活性位点,这种排列由两个单体之间的六个静电相互作用维持。鉴于在3型溶菌转糖基酶的所有成员中都观察到了这些结构基序,连环体可能也存在于那些酶中。二聚体连环体可能代表SltB1的一种调节形式。