Ngoennet Siripat, Honda Masaki, Patipong Tanutcha, Hibino Takashi, Waditee-Sirisattha Rungaroon, Kageyama Hakuto
Department of Microbiology, Faculty of Science, Chulalongkorn University, Payathai Road, Patumwan, Bangkok 10330, Thailand.
Department of Chemistry, Faculty of Science and Technology, Meijo University, 1-501 Shiogamaguchi, Tenpaku-ku, Nagoya, Aichi 468-8502, Japan.
Life (Basel). 2020 Mar 9;10(3):23. doi: 10.3390/life10030023.
The halotolerant cyanobacterium, sp. PCC 7418, possesses two classes of fructose-1,6-bisphosphate aldolase (FBA): H2846 and H2847. Though class I (CI)-FBA H2846 is thought to be associated with salt tolerance, the regulatory mechanisms, molecular characteristics, and expression profiles between H2846 and class II (CII)-FBA H2847 have scarcely been investigated. Here, we show that the accumulation of the H2846 protein is highly responsive to both up- and down-shock with NaCl, whereas H2847 is constitutively expressed. The activity of CI- and CII-FBA in cyanobacterial extracts is correlated with the accumulation patterns of H2846 and H2847, respectively. In addition, it was found that these activities were inhibited by NaCl and KCl, with CII-FBA activity strikingly inhibited. It was also found that the CI-FBA activity of recombinant H2846 was hindered by salts and that this hindrance could be moderated by the addition of glycine betaine (GB), whereas no moderation occurred with other potential osmoprotectant molecules (proline, sucrose, and glycerol). In addition, a phylogenetic analysis showed that CI-FBAs with higher similarities to H2846 tended to be distributed among potential GB-synthesizing cyanobacteria. Taken together, our results provide insights into the independent evolution of the CI- and CII-FBA gene families, which show distinct expression profiles and functions following salt stress.
嗜盐蓝藻菌株PCC 7418拥有两类果糖-1,6-二磷酸醛缩酶(FBA):H2846和H2847。虽然I类(CI)-FBA H2846被认为与耐盐性有关,但H2846与II类(CII)-FBA H2847之间的调控机制、分子特征和表达谱几乎未被研究。在此,我们表明H2846蛋白的积累对NaCl的上调和下调冲击均高度敏感,而H2847是组成型表达。蓝藻提取物中CI-和CII-FBA的活性分别与H2846和H2847的积累模式相关。此外,发现这些活性受到NaCl和KCl的抑制,其中CII-FBA活性受到显著抑制。还发现重组H2846的CI-FBA活性受到盐的阻碍,并且这种阻碍可通过添加甘氨酸甜菜碱(GB)来缓解,而其他潜在的渗透保护剂分子(脯氨酸、蔗糖和甘油)则没有这种缓解作用。此外,系统发育分析表明,与H2846具有更高相似性的CI-FBAs倾向于分布在潜在的GB合成蓝藻中。综上所述,我们的结果为CI-和CII-FBA基因家族的独立进化提供了见解,这两个基因家族在盐胁迫下表现出不同的表达谱和功能。