The Highly Conserved Cys95 Residue of Fructose-1,6-Bisphosphatase 1 Mediates the pH-Driven Structure and Activity of the Enzyme and Photosynthesis

IF 6.3 1区 生物学 Q1 PLANT SCIENCES
Samuel Gámez-Arcas, Edurne Baroja-Fernández, Francisco José Muñoz, Antonio J. Serrato, Mónica Balsera, Ángela María Sánchez-López, Abdellatif Bahaji, Jesús Leal-López, Rafael Jorge León Morcillo, Javier Pozueta-Romero
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Abstract

In Arabidopsis, exposure to microbial volatile compounds promotes thiol reduction of the Cys95 residue of the photosynthetic enzyme fructose-1,6-bisphosphatase (cFBP1). Although highly conserved in plants, the Cys95 function still remains unknown. We characterised recombinant wild-type (WT) cFBP1 and a variant (C95S) in which the Cys95 residue was replaced by serine. Furthermore, we characterised cFBP1-lacking cfbp1 transgenic plants expressing WT or C95S cFBP1. Cys95 replacement by serine reduced cFBP1 activity and its Mg2+ binding affinity and cooperativity. Although it is widely assumed that active cFBP1 is strictly homotetrameric, WT and C95S cFBP1 were present as inactive tetramers at pH 7.0 and active dimers at pH 8.3. At pH 7.8, WT and C95S cFBP1 were predominantly present as dimers and tetramers, respectively. WT cFBP1 expression totally reverted to WT the reduced photosynthetic activity of cfbp1 plants grown in the absence or presence of microbial volatiles, but that of C95S cFBP1 only partially did it. Artificial intelligence-based AlphaFold protein structure analyses predicted that the replacement of Cys95 by serine promotes cFBP1 conformational changes. We conclude that (i) active cFBP1 is strictly dimeric at pH values occurring in illuminated chloroplasts and (ii) Cys95 is an important determinant of the stromal pH-driven structure and activity of cFBP1 and photosynthesis.

Abstract Image

果糖-1,6-双磷酸酶1高度保守的Cys95残基介导酶的ph驱动结构和活性以及光合作用。
在拟南芥中,暴露于微生物挥发性化合物可促进光合酶果糖-1,6-双磷酸酶(cFBP1) Cys95残基的硫醇还原。虽然在植物中高度保守,但Cys95的功能仍不清楚。我们鉴定了重组野生型(WT) cFBP1和Cys95残基被丝氨酸取代的变体(C95S)。此外,我们还鉴定了缺乏cfbp1的cfbp1转基因植株,表达WT或C95S cfbp1。用丝氨酸替代Cys95降低了cFBP1的活性及其与Mg2+的结合亲和力和协同性。尽管人们普遍认为活性cFBP1是严格的同四聚体,但WT和C95S cFBP1在pH 7.0时为非活性四聚体,在pH 8.3时为活性二聚体。在pH 7.8时,WT和C95S cFBP1分别以二聚体和四聚体的形式存在。WT cFBP1的表达完全恢复了在无微生物挥发物或有微生物挥发物存在的情况下cFBP1植株的光合活性降低,而C95S cFBP1的表达仅部分恢复了cFBP1植株的光合活性。基于人工智能的AlphaFold蛋白结构分析预测,丝氨酸取代Cys95促进了cFBP1的构象变化。我们得出结论:(i)在光照下叶绿体的pH值下,活性cFBP1严格是二聚体;(ii) Cys95是基质pH驱动的cFBP1结构和活性以及光合作用的重要决定因素。
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来源期刊
Plant, Cell & Environment
Plant, Cell & Environment 生物-植物科学
CiteScore
13.30
自引率
4.10%
发文量
253
审稿时长
1.8 months
期刊介绍: Plant, Cell & Environment is a premier plant science journal, offering valuable insights into plant responses to their environment. Committed to publishing high-quality theoretical and experimental research, the journal covers a broad spectrum of factors, spanning from molecular to community levels. Researchers exploring various aspects of plant biology, physiology, and ecology contribute to the journal's comprehensive understanding of plant-environment interactions.
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