Aix Marseille Univ, CNRS, Laboratoire de Chimie Bactérienne LCB, IMM, Marseille, France.
Mol Microbiol. 2023 Apr;119(4):492-504. doi: 10.1111/mmi.15044. Epub 2023 Feb 16.
Under nitrogen-limiting conditions, the filamentous cyanobacterium Nostoc PCC7120 differentiates nitrogen-fixing heterocysts at semi-regular intervals along filaments generating a periodic pattern of two distinct cell types. Heterocysts are micro-oxic cells that host the oxygen-sensitive nitrogenase allowing two antagonistic activities to take place simultaneously. Although several factors required to control the differentiation process are known, the molecular mechanisms engaged have only been elucidated for a few of them. The patB (cnfR) gene has been shown to be essential for heterocyst formation and nitrogen fixation in this cyanobacterium, but its function remains to be clarified. Here, we show that PatB acts as a direct transcriptional regulator of genes required for nitrogenase production and activity. The DNA-binding activity of PatB does not depend on micro-oxia as it interacts with its target promoters under aerobic conditions both in vitro and in vivo. The absence of the DNA-binding domain of PatB can be rescued in the heterocyst but not in the vegetative cell. Furthermore, the putative ferredoxin domain of PatB is not essential to its interaction with DNA. The patB gene is widely conserved in cyanobacterial genomes and its function can be pleiotropic since it is not limited to nitrogen fixation control.
在氮限制条件下,丝状蓝藻念珠藻 PCC7120 沿着丝状物每隔半固定间隔分化出固氮异形胞,产生两种不同细胞类型的周期性模式。异形胞是微氧细胞,其中含有对氧气敏感的固氮酶,允许两种拮抗活性同时发生。尽管已经知道控制分化过程所需的几个因素,但参与其中的分子机制仅在少数几个因素中得到阐明。PatB(cnfR)基因已被证明对这种蓝藻的异形胞形成和固氮至关重要,但它的功能仍有待阐明。在这里,我们表明 PatB 作为氮酶产生和活性所需基因的直接转录调节剂发挥作用。PatB 的 DNA 结合活性不依赖于微氧,因为它在体外和体内有氧条件下与靶启动子相互作用。PatB 的 DNA 结合域缺失可以在异形胞中得到挽救,但不能在营养细胞中得到挽救。此外,PatB 的推定铁氧还蛋白结构域对其与 DNA 的相互作用不是必需的。patB 基因在蓝藻基因组中广泛保守,其功能可能是多效的,因为它不仅限于固氮控制。