首页> 外文期刊>Molecular Microbiology >Cellular location and temperature-dependent assembly of IncHI1 plasmid R27-encoded TrhC-associated conjugative transfer protein complexes.
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Cellular location and temperature-dependent assembly of IncHI1 plasmid R27-encoded TrhC-associated conjugative transfer protein complexes.

机译:IncHI1质粒R27编码的TrhC相关的共轭转移蛋白复合物的细胞定位和温度依赖性装配。

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摘要

Conjugal transfer of IncHI plasmid DNA between Gram-negative bacteria is temperature sensitive, as mating is optimal between 22 degrees C and 30 degrees C but is inhibited at 37 degrees C. R27, isolated from Salmonella enterica serovar Typhi, is an IncHI1 plasmid of 180 kbp that has been sequenced completely. The gene encoding green fluorescent protein (GFP) was inserted into R27 in frame with trhC. TrhC is a mating pair formation (Mpf) protein that is essential for plasmid transfer and H-pilus production. Fluorescence microscopy allowed visualization of the TrhC-GFP fusion protein, and Escherichia coli cells were examined for the subcellular localization and temperature-dependent production of TrhC-GFP. At 27 degrees C, TrhC-GFP was found at the periphery of cells as discrete foci, indicating an association of TrhC within protein complexes in the bacterial cell membrane, whereas at 37 degrees C, little fluorescence was detected. These foci probably represent the intracellular position of protein complexes involved in conjugative transfer, as the formation of foci was dependent upon the presence of other Mpf proteins. During temperature shift experiments from 37 degrees C to 27 degrees C, a long lag period was required for generation of GFP foci. Conversely, during short shifts from 27 degrees C to 37 degrees C, the GFP foci remained stable. These results suggest that the expression of transfer genes in the Tra2 region of R27 is temperature dependent. Subcellular localization of TrhC was verified by cellular fractionation. Expression patterns of TrhC-GFP were confirmed with immunoblot analysis and reverse transcriptase-polymerase chain reaction (RT-PCR). These results allow us to propose mechanisms to explain the temperature-sensitive transfer of R27.
机译:革兰氏阴性细菌之间的IncHI质粒DNA的结合转移对温度敏感,因为交配在22摄氏度至30摄氏度之间最佳,但在37摄氏度时受到抑制。从肠沙门氏菌血清型伤寒沙门氏菌中分离出来的R27是180的IncHI1质粒已完全测序的kbp。将编码绿色荧光蛋白(GFP)的基因与trhC一起插入R27。 TrhC是交配对形成(Mpf)蛋白,对于质粒转移和H菌毛产生至关重要。荧光显微镜可以观察到TrhC-GFP融合蛋白,并检查大肠杆菌细胞的TrhC-GFP的亚细胞定位和温度依赖性产生。在27摄氏度时,在细胞外围发现TrhC-GFP为离散的病灶,表明TrhC在细菌细胞膜蛋白复合物中的缔合,而在37摄氏度时,几乎未检测到荧光。这些病灶可能代表参与共轭转移的蛋白质复合物的胞内位置,因为病灶的形成取决于其他Mpf蛋白的存在。在从37摄氏度到27摄氏度的温度变化实验中,GFP焦点的产生需要很长的滞后时间。相反,在从27摄氏度到37摄氏度的短暂转变过程中,GFP焦点保持稳定。这些结果表明,R27的Tra2区域中转移基因的表达是温度依赖性的。 TrhC的亚细胞定位已通过细胞分级验证。 TrhC-GFP的表达模式通过免疫印迹分析和逆转录聚合酶链反应(RT-PCR)进行了确认。这些结果使我们能够提出机制来解释R27的温度敏感转移。

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