4.8 Article

SH3 Domain-Containing Protein 2 Plays a Crucial Role at the Step of Membrane Tubulation during Cell Plate Formation

期刊

PLANT CELL
卷 29, 期 6, 页码 1388-1405

出版社

AMER SOC PLANT BIOLOGISTS
DOI: 10.1105/tpc.17.00108

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资金

  1. Cooperative Research program for Agriculture Science and Technology Development Rural Development Administration, Republic of Korea [010953012016]
  2. National Institutes of Health (NIH) [GM68849]
  3. Institute for Basic Science [IBS-R021-D1]
  4. CBBI fellowship - NIH [T32GM075762]
  5. Research Grants Council of Hong Kong [AoE/M-05/12, C4011-14R]
  6. Rural Development Administration (RDA), Republic of Korea [PJ010953012017] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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During cytokinesis in plants, trans-Golgi network-derived vesicles accumulate at the center of dividing cells and undergo various structural changes to give rise to the planar cell plate. However, how this conversion occurs at the molecular level remains elusive. In this study, we report that SH3 Domain-Containing Protein 2 (SH3P2) in Arabidopsis thaliana plays a crucial role in converting vesicles to the planar cell plate. SH3P2 RNAi plants showed cytokinesis-defective phenotypes and produced aggregations of vesicles at the leading edge of the cell plate. SH3P2 localized to the leading edge of the cell plate, particularly the constricted or curved regions of the cell plate. The BAR domain of SH3P2 induced tubulation of vesicles. SH3P2 formed a complex with dynamin-related protein 1A (DRP1A) and affected DRP1A accumulation to the cell plate. Based on these results, we propose that SH3P2 functions together with DRP1A to convert the fused vesicles to tubular structures during cytokinesis.

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