Science · 2016 · 93 citations · 23 references
EngineeringPlasma Membrane LocalizationGlycobiologyMolecular BiologyCsc AssemblyEnzymatic ModificationPlant Molecular BiologyBiosynthesisPlant Cellulose MicrofibrilsCellulose Synthase ComplexBiochemistryProtein BiosynthesisBiomolecular EngineeringCellular EnzymologyArabidopsis Cesa7Natural SciencesEnzyme CatalysisBiotechnologyProtein EngineeringCellular BiochemistryHemicellulose
Plant cellulose microfibrils are synthesized by a process that propels the cellulose synthase complex (CSC) through the plane of the plasma membrane. How interactions between membranes and the CSC are regulated is currently unknown. Here, we demonstrate that all catalytic subunits of the CSC, known as cellulose synthase A (CESA) proteins, are S-acylated. Analysis of Arabidopsis CESA7 reveals four cysteines in variable region 2 (VR2) and two cysteines at the carboxy terminus (CT) as S-acylation sites. Mutating both the VR2 and CT cysteines permits CSC assembly and trafficking to the Golgi but prevents localization to the plasma membrane. Estimates suggest that a single CSC contains more than 100 S-acyl groups, which greatly increase the hydrophobic nature of the CSC and likely influence its immediate membrane environment.
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Nanostructure of cellulose microfibrils in spruce wood
Anwesha N. Fernandes, Lynne H. Thomas, Clemens Altaner et al. · Proceedings of the National Academy of Sciences · 2011 · 712 citations · Full text