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Characterization of Subcellular Dynamics of Sterol Methyltransferases Clarifies Defective Cell Division in , a C-24 Ethyl Sterol-Deficient Mutant of Arabidopsis. | LitMetric

AI Article Synopsis

  • - The study focuses on an Arabidopsis mutant that has a defect in the sterolmethyltransferase2 (SMT2) enzyme, leading to significant growth issues and a loss of specific sterols, indicating the unique function of C-24 ethyl sterols in growth.
  • - Fluorescent labeling of sterol biosynthetic enzymes showed that SMT2-GFP is located in the endoplasmic reticulum during interphase but relocates to the division plane during cell division, revealing that this movement is not linked to the transport of cytokinetic vesicles.
  • - The abnormal division processes are accompanied by poor cytoskeletal organization and a failure to establish proper cell wall structures in daughter cells, suggesting that C-24

Article Abstract

An Arabidopsis sterol mutant, , defective in sterolmethyltransferase2 (SMT2), exhibits severe growth abnormalities. The loss of C-24 ethyl sterols, maintaining the biosynthesis of C-24 methyl sterols and brassinosteroids, suggests specific roles of C-24 ethyl sterols. We characterized the subcellular localizations of fluorescent protein-fused sterol biosynthetic enzymes, such as SMT2-GFP, and found these enzymes in the endoplasmic reticulum during interphase and identified their movement to the division plane during cytokinesis. The mobilization of endoplasmic reticulum-localized SMT2-GFP was independent of the polarized transport of cytokinetic vesicles to the division plane. In , SMT2-GFP moved to the abnormal division plane, and unclear cell plate ends were surrounded by hazy structures from SMT2-GFP fluorescent signals and unincorporated cellulose debris. Unusual cortical microtubule organization and impaired cytoskeletal function accompanied the failure to determine the cortical division site and division plane formation. These results indicated that both endoplasmic reticulum membrane remodeling and cytokinetic vesicle transport during cytokinesis were impaired, resulting in the defects of cell wall generation. The cell wall integrity was compromised in the daughter cells, preventing the correct determination of the subsequent cell division site. We discuss the possible roles of C-24 ethyl sterols in the interaction between the cytoskeletal network and the plasma membrane.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11275053PMC
http://dx.doi.org/10.3390/biom14070868DOI Listing

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