首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Interplay among Membrane-Bound Lytic Transglycosylase D1 the CreBC Two-Component Regulatory System the AmpNG-AmpDI-NagZ-AmpR Regulatory Circuit and L1/L2 β-Lactamase Expression in Stenotrophomonas maltophilia
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Interplay among Membrane-Bound Lytic Transglycosylase D1 the CreBC Two-Component Regulatory System the AmpNG-AmpDI-NagZ-AmpR Regulatory Circuit and L1/L2 β-Lactamase Expression in Stenotrophomonas maltophilia

机译:在嗜麦芽窄食单胞菌中膜结合的溶血糖基转移糖基酶D1CreBC两组分调节系统AmpNG-AmpDI-NagZ-AmpR调节回路和L1 / L2β-内酰胺酶表达之间的相互作用。

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摘要

Lytic transglycosylases (LTs) are an important class of enzymes involved in peptidoglycan (PG) cleavage, with the concomitant formation of an intramolecular 1,6-anhydromuramoyl reaction product. There are six annotated LT genes in the Stenotrophomonas maltophilia genome, including genes for five membrane-bound LTs (mltA, mltB1, mltB2, mltD1, and mltD2) and a gene for soluble LT (slt). Six LTs of S. maltophilia KJ were systematically mutated, yielding the ΔmltA, ΔmltB1, ΔmltB2, ΔmltD1, ΔmltD2, and Δslt mutants. Inactivation of mltD1 conferred a phenotype of elevated uninduced β-lactamase activity. The underlying mechanism responsible for this phenotype was elucidated by the construction of several mutants and determination of β-lactamase activity. The expression of the genes assayed was assessed by quantitative reverse transcriptase PCR and a promoter transcription fusion assay. The results demonstrate that ΔmltD1 mutant-mediated L1/L2 β-lactamase expression involved the creBC two-component regulatory system (TCS) and the ampNG-ampDI-nagZ-ampR regulatory circuit. The inactivation of mltD1 resulted in mltB1 and mltD2 upexpression in a creBC- and ampNG-dependent manner. The overexpressed MltB1 and MltD2 activity contributed to the expression of the L1/L2 β-lactamase genes via the ampNG-ampDI-nagZ-ampR regulatory circuit. These findings reveal, for the first time, a linkage between LTs, the CreBC TCS, the ampNG-ampDI-nagZ-ampR regulatory circuit, and L1/L2 β-lactamase expression in S. maltophilia.
机译:裂解糖基转移糖基化酶(LTs)是一类重要的酶,参与肽聚糖(PG)的裂解,并伴随形成分子内1,6-脱水村酰胺基反应产物。嗜麦芽窄食单胞菌基因组中有6个带注释的LT基因,包括5个膜结合LT(mltA,mltB1,mltB2,mltD1和mltD2)的基因和可溶性LT(slt)的基因。系统地突变了六个嗜S.maltophilia KJ LT,产生了ΔmltA,ΔmltB1,ΔmltB2,ΔmltD1,ΔmltD2和Δslt突变体。 mltD1的失活赋予未诱导的β-内酰胺酶活性升高的表型。通过构建几个突变体并确定β-内酰胺酶活性,阐明了造成该表型的潜在机制。通过定量逆转录酶PCR和启动子转录融合测定法评估测定的基因的表达。结果表明,ΔmltD1突变体介导的L1 / L2β-内酰胺酶表达涉及 creBC 两组分调节系统(TCS)和 ampNG-ampD I- nagZ-ampR 调节电路。 mltD1 的失活导致在 creBC -和 ampNG mltB1 mltD2 过表达>依赖方式。过表达的MltB1和MltD2活性通过 ampNG-ampD I- nagZ-ampR 调节回路促进了L1 / L2β-内酰胺酶基因的表达。这些发现首次揭示了LT,CreBC TCS, ampNG-ampD I- nagZ-ampR 调节电路和L1 / L2β-内酰胺酶在 S中的表达。嗜麦芽症

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