Bardin C, Sinha R K, Kalomiris E, Neuhaus F C
J Bacteriol. 1984 Feb;157(2):398-404. doi: 10.1128/jb.157.2.398-404.1984.
Membranes from Gaffkya homari reactivated by freezing and thawing were used to study the processing events involved in the assembly of both sodium dodecyl sulfate (SDS)-insoluble peptidoglycan (PG) and SDS-soluble PG. The ability to reactivate membranes for the synthesis of these polymers provided an opportunity to monitor those events that are not influenced by wall-linked PG. In G. homari, processing for the formation of cross-links requires the selective actions of DD-carboxypeptidase, LD-carboxypeptidase, and NE-(DAla)-Lys transpeptidase. Time courses of cross-link formation, as measured by the amounts of amidated bisdisaccharide peptide dimer and nonamidated bisdisaccharide peptide dimer, showed a lack of correlation with those for the synthesis of SDS-insoluble PG. SDS-soluble PG, which is significantly cross-linked when synthesized in the absence of penicillin G, was a precursor of the SDS-insoluble PG. In the presence of penicillin G, un-cross-linked SDS-soluble PG was synthesized. This PG was also utilized and processed for the synthesis of cross-linked SDS-insoluble PG after removal of the beta-lactam. This protocol provided a method for separating stages in the synthesis and elongation of PG from those involved in processing. Cross-linkage in the various PG fractions ranged from 0 to 19% in SDS-soluble PG and from 2 to 24% in SDS-insoluble PG. Thus, the results indicated that there is no direct correlation between SDS insolubility and the degree of cross-linkage. Instead, they suggested that additional features may contribute to the insolubility of PG in SDS.
通过冻融重新激活的龙虾加夫基菌(Gaffkya homari)的细胞膜被用于研究参与十二烷基硫酸钠(SDS)不溶性肽聚糖(PG)和SDS可溶性PG组装的加工过程。重新激活细胞膜以合成这些聚合物的能力为监测那些不受细胞壁连接的PG影响的事件提供了机会。在龙虾加夫基菌中,形成交联的加工过程需要DD-羧肽酶、LD-羧肽酶和NE-(D-丙氨酸)-赖氨酸转肽酶的选择性作用。通过酰胺化双二糖肽二聚体和非酰胺化双二糖肽二聚体的量来测量交联形成的时间进程,结果显示与SDS不溶性PG的合成缺乏相关性。在不存在青霉素G的情况下合成时显著交联的SDS可溶性PG是SDS不溶性PG的前体。在青霉素G存在的情况下,合成了未交联的SDS可溶性PG。在去除β-内酰胺后,这种PG也被用于合成交联的SDS不溶性PG并进行加工。该方案提供了一种方法,用于将PG合成和延伸阶段与加工阶段分开。各种PG组分中的交联程度在SDS可溶性PG中为0至19%,在SDS不溶性PG中为2至24%。因此,结果表明SDS不溶性与交联程度之间没有直接相关性。相反,它们表明其他特征可能导致PG在SDS中的不溶性。