Kohler Petra L, Hamilton Holly L, Cloud-Hansen Karen, Dillard Joseph P
Department of Medical Microbiology and Immunology, University of Wisconsin-Madison School of Medicine and Public Health, Madison, Wisconsin, USA.
J Bacteriol. 2007 Aug;189(15):5421-8. doi: 10.1128/JB.00531-07. Epub 2007 May 25.
Type IV secretion systems require peptidoglycan lytic transglycosylases for efficient secretion, but the function of these enzymes is not clear. The type IV secretion system gene cluster of Neisseria gonorrhoeae encodes two peptidoglycan transglycosylase homologues. One, LtgX, is similar to peptidoglycan transglycosylases from other type IV secretion systems. The other, AtlA, is similar to endolysins from bacteriophages and is not similar to any described type IV secretion component. We characterized the enzymatic function of AtlA in order to examine its role in the type IV secretion system. Purified AtlA was found to degrade macromolecular peptidoglycan and to produce 1,6-anhydro peptidoglycan monomers, characteristic of lytic transglycosylase activity. We found that AtlA can functionally replace the lambda endolysin to lyse Escherichia coli. In contrast, a sensitive measure of lysis demonstrated that AtlA does not lyse gonococci expressing it or gonococci cocultured with an AtlA-expressing strain. The gonococcal type IV secretion system secretes DNA during growth. A deletion of ltgX or a substitution in the putative active site of AtlA severely decreased DNA secretion. These results indicate that AtlA and LtgX are actively involved in type IV secretion and that AtlA is not involved in lysis of gonococci to release DNA. This is the first demonstration that a type IV secretion peptidoglycanase has lytic transglycosylase activity. These data show that AtlA plays a role in type IV secretion of DNA that requires peptidoglycan breakdown without cell lysis.
IV型分泌系统需要肽聚糖裂解转糖基酶来实现高效分泌,但其功能尚不清楚。淋病奈瑟菌的IV型分泌系统基因簇编码两种肽聚糖转糖基酶同源物。一种是LtgX,与其他IV型分泌系统的肽聚糖转糖基酶相似。另一种是AtlA,与噬菌体的内溶素相似,与任何已描述的IV型分泌成分都不相似。我们对AtlA的酶功能进行了表征,以研究其在IV型分泌系统中的作用。发现纯化的AtlA可降解大分子肽聚糖并产生1,6-脱水肽聚糖单体,这是裂解转糖基酶活性的特征。我们发现AtlA可以在功能上替代λ内溶素来裂解大肠杆菌。相比之下,一种敏感的裂解检测方法表明,AtlA不会裂解表达它的淋球菌或与表达AtlA的菌株共培养的淋球菌。淋球菌IV型分泌系统在生长过程中分泌DNA。ltgX的缺失或AtlA假定活性位点的取代会严重降低DNA分泌。这些结果表明,AtlA和LtgX积极参与IV型分泌,且AtlA不参与淋球菌裂解以释放DNA。这是首次证明IV型分泌肽聚糖酶具有裂解转糖基酶活性。这些数据表明,AtlA在DNA的IV型分泌中发挥作用,这种分泌需要肽聚糖分解而不导致细胞裂解。