Yamazawa Akira, Takeyama Haruko, Takeda Daisuke, Matsunaga Tadashi
Microbiology (Reading). 1999 Apr;145 ( Pt 4):949-954. doi: 10.1099/13500872-145-4-949.
The authors have examined the response to UV-A irradiation of the UV-A-resistant marine cyanobacterium Oscillatoria sp. NKBG 091600, which produces the UV-A-absorbing compound biopterin glucoside. The expression of a 60 kDa protein was markedly induced at 500 min after UV-A irradiation. This protein was identified by N-terminal amino acid sequence analysis as GroEL. Northern blot analysis demonstrated that GroEL synthesis was controlled by UV-A at the transcriptional level. A CIRCE element and a putative SOS consensus sequence were found upstream of the groESL operon, overlapping two putative promoter sequences. Primer extension analysis revealed that groESL transcription in UV-A-induced cells starts from the proximal promoter overlapped by the SOS consensus sequence. This indicates that an SOS response regulation is instrumental in UV-A-induced GroEL expression of Oscillatoria sp. NKBG 091600. Furthermore, this UV-A-inducible GroEL may function to upregulate biopterin glucoside biosynthesis, thereby allowing growth under UV-A irradiation.
作者研究了抗UV-A的海洋蓝细菌颤藻属Oscillatoria sp. NKBG 091600对UV-A照射的反应,该蓝细菌可产生吸收UV-A的化合物生物蝶呤葡糖苷。UV-A照射500分钟后,一种60 kDa蛋白的表达明显被诱导。通过N端氨基酸序列分析鉴定该蛋白为GroEL。Northern印迹分析表明,GroEL的合成在转录水平受UV-A控制。在groESL操纵子上游发现了一个CIRCE元件和一个假定的SOS共有序列,与两个假定的启动子序列重叠。引物延伸分析显示,UV-A诱导细胞中groESL转录从与SOS共有序列重叠的近端启动子开始。这表明SOS反应调控有助于UV-A诱导颤藻属Oscillatoria sp. NKBG 091600的GroEL表达。此外,这种UV-A诱导的GroEL可能起到上调生物蝶呤葡糖苷生物合成的作用,从而使细胞能够在UV-A照射下生长。