CNRS, BIP UMR 7281, Aix Marseille Univ, 31 Chemin Joseph Aiguier, 13402, Marseille Cedex 20, France.
Key Laboratory of Aquatic Botany and Watershed Ecology, Wuhan Botanical Garden, Center of Plant Ecology, Core Botanical Gardens, Chinese Academy of Sciences, Wuhan, 430074, China.
Cell Commun Signal. 2021 Mar 24;19(1):38. doi: 10.1186/s12964-021-00718-x.
CP12 is a small chloroplast protein that is widespread in various photosynthetic organisms and is an actor of the redox signaling pathway involved in the regulation of the Calvin Benson Bassham (CBB) cycle. The gene encoding this protein is conserved in many diatoms, but the protein has been overlooked in these organisms, despite their ecological importance and their complex and still enigmatic evolutionary background.
A combination of biochemical, bioinformatics and biophysical methods including electrospray ionization-mass spectrometry, circular dichroism, nuclear magnetic resonance spectroscopy and small X ray scattering, was used to characterize a diatom CP12.
Here, we demonstrate that CP12 is expressed in the marine diatom Thalassiosira pseudonana constitutively in dark-treated and in continuous light-treated cells as well as in all growth phases. This CP12 similarly to its homologues in other species has some features of intrinsically disorder protein family: it behaves abnormally under gel electrophoresis and size exclusion chromatography, has a high net charge and a bias amino acid composition. By contrast, unlike other known CP12 proteins that are monomers, this protein is a dimer as suggested by native electrospray ionization-mass spectrometry and small angle X-ray scattering. In addition, small angle X-ray scattering revealed that this CP12 is an elongated cylinder with kinks. Circular dichroism spectra indicated that CP12 has a high content of α-helices, and nuclear magnetic resonance spectroscopy suggested that these helices are unstable and dynamic within a millisecond timescale. Together with in silico predictions, these results suggest that T. pseudonana CP12 has both coiled coil and disordered regions.
These findings bring new insights into the large family of dynamic proteins containing disordered regions, thus increasing the diversity of known CP12 proteins. As it is a protein that is more abundant in many stresses, it is not devoted to one metabolism and in particular, it is not specific to carbon metabolism. This raises questions about the role of this protein in addition to the well-established regulation of the CBB cycle. Choregraphy of metabolism by CP12 proteins in Viridiplantae and Heterokonta. While the monomeric CP12 in Viridiplantae is involved in carbon assimilation, regulating phosphoribulokinase (PRK) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH) through the formation of a ternary complex, in Heterokonta studied so far, the dimeric CP12 is associated with Ferredoxin-NADP reductase (FNR) and GAPDH. The Viridiplantae CP12 can bind metal ions and can be a chaperone, the Heterokonta CP12 is more abundant in all stresses (C, N, Si, P limited conditions) and is not specific to a metabolism. Video Abstract.
CP12 是一种广泛存在于各种光合生物中的小型叶绿体蛋白,是参与卡尔文-本森-巴斯汉姆(CBB)循环调节的氧化还原信号通路的作用因子。编码该蛋白的基因在许多硅藻中保守,但尽管硅藻具有重要的生态意义和复杂而神秘的进化背景,它们的蛋白质却被忽视了。
采用电喷雾电离-质谱、圆二色性、核磁共振波谱和小角 X 射线散射等生化、生物信息学和生物物理方法相结合,对一种硅藻 CP12 进行了表征。
在这里,我们证明 CP12 在海洋硅藻塔玛斯氏拟菱形藻中无论是在黑暗处理还是连续光照处理的细胞中,还是在所有生长阶段,都持续表达。与其他物种的同源物一样,这种 CP12 具有一些无序蛋白家族的特征:在凝胶电泳和排阻层析中表现异常,具有高净电荷和偏性氨基酸组成。相比之下,与其他已知的 CP12 蛋白不同,这些蛋白是单体,而这种蛋白是二聚体,这一点通过原生电喷雾电离-质谱和小角 X 射线散射得到了提示。此外,小角 X 射线散射表明,这种 CP12 是一个带有扭结的长圆柱。圆二色性光谱表明 CP12 具有高含量的α-螺旋,核磁共振波谱表明这些螺旋在毫秒级的时间尺度上不稳定且动态。与计算机预测相结合,这些结果表明,塔玛斯氏拟菱形藻 CP12 既含有卷曲螺旋结构域,也含有无序结构域。
这些发现为包含无序区域的大型动态蛋白家族提供了新的见解,从而增加了已知 CP12 蛋白的多样性。由于它是一种在许多应激条件下更为丰富的蛋白质,因此它并不专门用于一种代谢途径,特别是,它并不专门用于碳代谢。这就提出了关于该蛋白在 CBB 循环的既定调控之外的作用的问题。CP12 蛋白在 Viridiplantae 和 Heterokonta 中的新陈代谢编舞。虽然在 Viridiplantae 中的单体 CP12 参与碳同化,通过形成三元复合物来调节磷酸核糖激酶(PRK)和甘油醛-3-磷酸脱氢酶(GAPDH),但在迄今研究过的 Heterokonta 中,二聚体 CP12 与铁氧还蛋白-NADP 还原酶(FNR)和 GAPDH 相关。Viridiplantae 的 CP12 可以结合金属离子并可以作为伴侣蛋白,Heterokonta 的 CP12 在所有应激条件下(C、N、Si、P 限制条件)更为丰富,并且与一种代谢无关。视频摘要。