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两个独立的转录单元控制着伯氏疏螺旋体中bmp旁系同源染色体基因家族的复杂且同时的表达。

Two independent transcriptional units control the complex and simultaneous expression of the bmp paralogous chromosomal gene family in Borrelia burgdorferi.

作者信息

Dobrikova E Y, Bugrysheva J, Cabello F C

机构信息

Department of Microbiology and Immunology, New York Medical College, Basic Science Building, Valhalla, NY 10595-1690, USA.

出版信息

Mol Microbiol. 2001 Jan;39(2):370-8. doi: 10.1046/j.1365-2958.2001.02220.x.

Abstract

The chromosomal paralogous gene family 36 encodes for four lipoproteins with high amino acid homology that are expressed in vivo in humans and animals and are immunogenic. Transcriptional analysis of the bmp gene cluster indicated that all four genes of this cluster are expressed in vitro and constitute two transcriptional units with a complex pattern of transcription, including alternative monocistronic and polycistronic messages. One unit consists of bmpD, whose transcription is coupled to the transcription of the ribosomal protein genes, rpsG and rpsL. The second unit includes bmpC, bmpA and bmpB. The simultaneous expression of the four bmp genes in Borrelia burgdorferi suggests that their gene products may have either different or complementary functions. Primer extension experiments identified promoters for bmpD, bmpC and bmpA, but not for bmpB. The concentration of gene-specific mRNA paralleled its promoter homology to the Escherichia coli sigma70 promoter. The linkage of bmpD expression to rpsL and rpsG suggests that the expression of this gene may be controlled by growth-related global regulation mechanisms in B. burgdorferi. These results indicate that the bmp family constitutes a good model for the investigation of complex regulation of chromosomal gene expression in this bacteria.

摘要

染色体旁系同源基因家族36编码四种具有高氨基酸同源性的脂蛋白,这些脂蛋白在人类和动物体内表达且具有免疫原性。对bmp基因簇的转录分析表明,该基因簇的所有四个基因在体外均有表达,并构成两个具有复杂转录模式的转录单元,包括交替的单顺反子和多顺反子信息。一个单元由bmpD组成,其转录与核糖体蛋白基因rpsG和rpsL的转录偶联。第二个单元包括bmpC、bmpA和bmpB。伯氏疏螺旋体中四个bmp基因的同时表达表明它们的基因产物可能具有不同或互补的功能。引物延伸实验确定了bmpD、bmpC和bmpA的启动子,但未确定bmpB的启动子。基因特异性mRNA的浓度与其与大肠杆菌sigma70启动子的启动子同源性平行。bmpD表达与rpsL和rpsG的联系表明,该基因的表达可能受伯氏疏螺旋体中与生长相关的全局调控机制控制。这些结果表明,bmp家族是研究该细菌染色体基因表达复杂调控的良好模型。

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