Ross J I, Eady E A, Cove J H, Baumberg S
Department of Microbiology, University of Leeds, UK.
Gene. 1995 Feb 3;153(1):93-8. doi: 10.1016/0378-1119(94)00833-e.
The energy-dependent efflux of erythromycin (Er) in staphylococci is due to the presence of msr A, which encodes an ATP-binding protein. MsrA is related to the multi-component ATP-binding cassette (ABC) transporters which characteristically also contain membrane-spanning domains. Since MsrA functions in a heterologous host in the absence of other plasmid-encoded products, the requirement for a transmembrane (TM) complex might be fulfilled by hijacking a chromosomally encoded protein. Two genes, stpA and smpA, were identified upstream from msrA on the original Staphylococcus epidermidis plasmid, encoding an ATP-binding protein and a hydrophobic TM protein, respectively. Sequences highly similar to stpA and smpA (stpB and smpB) were also found adjacent to a chromosomal copy of msrA in S. hominis. In Southern blots, internal fragments of stpA or smpA hybridized to the chromosome of the Ers S. aureus RN4220. Cloning and sequence analysis of the region identified revealed the presence of two genes, stpC and smpC, related to stpA and smpA. The deduced amino-acid sequences of the gene products showed that StpA and StpC were 85% identical, whereas SmpA and SmpC were 65% identical. A gene similar to msrA was not present in the S. aureus chromosome. There was no further sequence similarity outside these conserved regions. These results indicate that the chromosomes of S. hominis and S. aureus contain sequences encoding a potential TM protein with which MsrA might interact.
葡萄球菌中红霉素(Er)的能量依赖性外排是由于msr A的存在,该基因编码一种ATP结合蛋白。MsrA与多组分ATP结合盒(ABC)转运蛋白相关,这些转运蛋白通常也包含跨膜结构域。由于MsrA在没有其他质粒编码产物的异源宿主中发挥作用,对跨膜(TM)复合物的需求可能通过劫持染色体编码的蛋白质来满足。在原始表皮葡萄球菌质粒上,msr A上游鉴定出两个基因,分别为stpA和smpA,它们分别编码一种ATP结合蛋白和一种疏水性TM蛋白。在人葡萄球菌中,与msr A的染色体拷贝相邻处也发现了与stpA和smpA高度相似的序列(stpB和smpB)。在Southern杂交中,stpA或smpA的内部片段与耐红霉素金黄色葡萄球菌RN4220的染色体杂交。对鉴定出的该区域进行克隆和序列分析,发现存在两个与stpA和smpA相关的基因,stpC和smpC。基因产物的推导氨基酸序列表明,StpA和StpC的同源性为85%,而SmpA和SmpC的同源性为65%。金黄色葡萄球菌染色体中不存在与msrA相似的基因。在这些保守区域之外没有进一步的序列相似性。这些结果表明,人葡萄球菌和金黄色葡萄球菌的染色体包含编码一种潜在TM蛋白的序列,MsrA可能与之相互作用。