Zhou R, Cao Z, Zhao J
College of Life Sciences, Peking University, Beijing, 100871, China.
Arch Microbiol. 1998 May;169(5):417-23. doi: 10.1007/s002030050592.
The hetR gene plays an important role in heterocyst development and pattern formation in heterocystous cyanobacteria. The hetR gene from Anabaena sp. PCC 7120 was overexpressed in Escherichia coli. Antibodies raised against the recombinant HetR protein (rHetR) were used to characterize metabolism of the HetR of Anabaena sp. PCC 7120 in vivo. HetR was present at a low level when Anabaena sp. PCC 7120 was grown in the presence of combined nitrogen. Shifting from nitrogen repletion conditions to nitrogen depletion conditions led to a two fold increase of HetR in total cell extracts, and most of HetR was located in heterocysts. The amount of HetR in total cellular extracts increased rapidly after shifting to nitrogen depletion conditions and reached a maximum level 3 h after the shift. Isoelectrofocusing electrophoresis revealed that the native HetR had a more acidic isoelectric point than did rHetR. After combined nitrogen was added to the nitrogen-depleted cultures, the degradation of HetR depended on culture conditions: before heterocysts were fully developed, HetR was rapidly degraded; after heterocysts were fully developed, HetR was degraded much more slowly. The distribution of HetR in other species of cyanobacteria was also studied.
hetR基因在异形胞蓝细菌的异形胞发育和模式形成中起着重要作用。来自鱼腥藻属PCC 7120的hetR基因在大肠杆菌中过表达。针对重组HetR蛋白(rHetR)产生的抗体用于表征鱼腥藻属PCC 7120的HetR在体内的代谢情况。当鱼腥藻属PCC 7120在化合态氮存在的情况下生长时,HetR的含量较低。从氮充足条件转变为氮缺乏条件会导致总细胞提取物中HetR增加两倍,并且大部分HetR位于异形胞中。转变为氮缺乏条件后,总细胞提取物中HetR的量迅速增加,并在转变后3小时达到最高水平。等电聚焦电泳显示,天然HetR的等电点比rHetR更偏酸性。向缺氮培养物中添加化合态氮后,HetR的降解取决于培养条件:在异形胞完全发育之前,HetR迅速降解;在异形胞完全发育之后,HetR的降解要慢得多。还研究了HetR在其他蓝细菌物种中的分布情况。