From cyanobacteria to Archaeplastida: new evolutionary insights into PII signalling in the plant kingdom

光养 蓝藻 生物 藻类 绿藻门 生物化学 谷氨酰胺合成酶 莱茵衣藻 光合作用 植物 基因 氨基酸 细菌 遗传学 谷氨酰胺 突变体
作者
Khaled A. Selim,Elena Ermilova,Karl Forchhammer
出处
期刊:New Phytologist [Wiley]
卷期号:227 (3): 722-731 被引量:34
标识
DOI:10.1111/nph.16492
摘要

Summary The PII superfamily consists of signal transduction proteins found in all domains of life. Canonical PII proteins sense the cellular energy state through the competitive binding of ATP and ADP, and carbon/nitrogen balance through 2‐oxoglutarate binding. The ancestor of Archaeplastida inherited its PII signal transduction protein from an ancestral cyanobacterial endosymbiont. Over the course of evolution, plant PII proteins acquired a glutamine‐sensing C‐terminal extension, subsequently present in all Chloroplastida PII proteins. The PII proteins of various algal strains (red, green and nonphotosynthetic algae) have been systematically investigated with respect to their sensory and regulatory properties. Comparisons of the PII proteins from different phyla of oxygenic phototrophs (cyanobacteria, red algae, Chlorophyta and higher plants) have yielded insights into their evolutionary conservation vs adaptive properties. The highly conserved role of the controlling enzyme of arginine biosynthesis, N ‐acetyl‐ l ‐glutamate kinase (NAGK), as a main PII‐interactor has been demonstrated across oxygenic phototrophs of cyanobacteria and Archaeplastida. In addition, the PII signalling system of red algae has been identified as an evolutionary intermediate between that of Cyanobacteria and Chloroplastida. In this review, we consider recent advances in understanding metabolic signalling by PII proteins of the plant kingdom.
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