Roumezi Baptiste, Xu Xiaomei, Risoul Véronique, Fan Yingping, Lebrun Régine, Latifi Amel
Laboratoire de Chimie Bactérienne, CNRS, Aix-Marseille Université, Marseille, France.
Proteomic Platform, Marseille Protéomique IBiSA Labelled, CNRS, IMM, Aix-Marseille Université, Marseille, France.
Front Microbiol. 2020 Jan 21;10:3140. doi: 10.3389/fmicb.2019.03140. eCollection 2019.
Hanks-type kinases encoding genes are present in most cyanobacterial genomes. Despite their widespread pattern of conservation, little is known so far about their role because their substrates and the conditions triggering their activation are poorly known. Here we report that under diazotrophic conditions, normal heterocyst differentiation and growth of the filamentous cyanobacterium PCC 7120 require the presence of the Pkn22 kinase, which is induced under combined nitrogen starvation conditions. By analyzing the phenotype of mutant overexpressing genes belonging to the regulatory cascade initiating the development program, an epistatic relationship was found to exist between this kinase and the master regulator of differentiation, HetR. The results obtained using a bacterial two hybrid approach indicated that Pkn22 and HetR interact, and the use of a genetic screen inducing the loss of this interaction showed that residues of HetR which are essential for this interaction to occur are also crucial to HetR activity both and . Mass spectrometry showed that HetR co-produced with the Pkn22 kinase in is phosphorylated on Serine 130 residue. Phosphoablative substitution of this residue impaired the ability of the strain to undergo cell differentiation, while its phosphomimetic substitution increased the number of heterocysts formed. The Serine 130 residue is part of a highly conserved sequence in filamentous cyanobacterial strains differentiating heterocysts. Heterologous complementation assays showed that the presence of this domain is necessary for heterocyst induction. We propose that the phosphorylation of HetR might have been acquired to control heterocyst differentiation.
编码汉克斯型激酶的基因存在于大多数蓝藻基因组中。尽管它们具有广泛的保守模式,但迄今为止对其作用了解甚少,因为其底物和触发其激活的条件尚不清楚。在此我们报告,在固氮条件下,丝状蓝藻PCC 7120的正常异形胞分化和生长需要Pkn22激酶的存在,该激酶在联合氮饥饿条件下被诱导。通过分析过表达属于启动发育程序的调控级联的基因的突变体的表型,发现该激酶与分化的主调节因子HetR之间存在上位关系。使用细菌双杂交方法获得的结果表明Pkn22和HetR相互作用,并且使用诱导这种相互作用丧失的遗传筛选表明,这种相互作用发生所必需的HetR残基对HetR的活性也至关重要。质谱分析表明,与Pkn22激酶在 中共产生的HetR在丝氨酸130残基上被磷酸化。该残基的磷酸化缺失替代损害了菌株进行细胞分化的能力,而其磷酸模拟替代增加了形成的异形胞数量。丝氨酸130残基是丝状蓝藻异形胞分化菌株中高度保守序列的一部分。异源互补试验表明该结构域的存在对于异形胞诱导是必需的。我们提出,HetR的磷酸化可能是为了控制异形胞分化而获得的。