Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA, 16802, USA.
Center for Advanced Biotechnology and Medicine, Rutgers University, Piscataway, NJ, 08854, USA.
New Phytol. 2023 Sep;239(6):2212-2224. doi: 10.1111/nph.19106. Epub 2023 Jul 10.
Cellulose is an essential component of plant cell walls and an economically important source of food, paper, textiles, and biofuel. Despite its economic and biological significance, the regulation of cellulose biosynthesis is poorly understood. Phosphorylation and dephosphorylation of cellulose synthases (CESAs) were shown to impact the direction and velocity of cellulose synthase complexes (CSCs). However, the protein kinases that phosphorylate CESAs are largely unknown. We conducted research in Arabidopsis thaliana to reveal protein kinases that phosphorylate CESAs. In this study, we used yeast two-hybrid, protein biochemistry, genetics, and live-cell imaging to reveal the role of calcium-dependent protein kinase32 (CPK32) in the regulation of cellulose biosynthesis in A. thaliana. We identified CPK32 using CESA3 as a bait in a yeast two-hybrid assay. We showed that CPK32 phosphorylates CESA3 while it interacts with both CESA1 and CESA3. Overexpressing functionally defective CPK32 variant and phospho-dead mutation of CESA3 led to decreased motility of CSCs and reduced crystalline cellulose content in etiolated seedlings. Deregulation of CPKs impacted the stability of CSCs. We uncovered a new function of CPKs that regulates cellulose biosynthesis and a novel mechanism by which phosphorylation regulates the stability of CSCs.
纤维素是植物细胞壁的重要组成部分,也是食物、纸张、纺织品和生物燃料的重要经济来源。尽管纤维素具有重要的经济和生物学意义,但纤维素生物合成的调控机制仍知之甚少。纤维素合酶(CESA)的磷酸化和去磷酸化被证明会影响纤维素合酶复合物(CSC)的方向和速度。然而,磷酸化 CESAs 的蛋白激酶在很大程度上仍是未知的。我们在拟南芥中进行了研究,以揭示磷酸化 CESAs 的蛋白激酶。在这项研究中,我们使用酵母双杂交、蛋白质生化、遗传学和活细胞成像来揭示钙依赖性蛋白激酶 32(CPK32)在拟南芥纤维素生物合成调控中的作用。我们使用 CESA3 作为酵母双杂交测定中的诱饵来鉴定 CPK32。我们表明 CPK32 可磷酸化 CESA3,同时与 CESA1 和 CESA3 相互作用。过表达功能缺陷的 CPK32 变体和 CESA3 的磷酸化缺失突变导致光下幼苗中 CSCs 的迁移率降低和结晶纤维素含量减少。CPK 失调会影响 CSCs 的稳定性。我们揭示了 CPK 调节纤维素生物合成的新功能,以及磷酸化调节 CSCs 稳定性的新机制。