4.8 Article

An early secretory pathway mediated by GNOM-LIKE 1 and GNOM is essential for basal polarity establishment in Arabidopsis thaliana

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1424856112

关键词

chemical genomics; endomembrane trafficking; PIN auxin transporters; plasma membrane protein polarity

资金

  1. Vetenskapradet and Vinnova (Verket fur Innovationssystemet)
  2. Knut och Alice Wallenbergs Stiftelse
  3. Kempestiftelserna
  4. Carl Tryggers Stiftelse fur Vetenskaplig Forskning
  5. European Research Council [ERC-2011-StG-20101109-PSDP]
  6. US Department of Energy [DE-FG02-02ER15295]
  7. National Science Foundation [MCB-0817916]
  8. U.S. Department of Energy (DOE) [DE-FG02-02ER15295] Funding Source: U.S. Department of Energy (DOE)

向作者/读者索取更多资源

Spatial regulation of the plant hormone indole-3-acetic acid (IAA, or auxin) is essential for plant development. Auxin gradient establishment is mediated by polarly localized auxin transporters, including PIN-FORMED (PIN) proteins. Their localization and abundance at the plasma membrane are tightly regulated by endo-membrane machinery, especially the endocytic and recycling pathways mediated by the ADP ribosylation factor guanine nucleotide exchange factor (ARF-GEF) GNOM. We assessed the role of the early secretory pathway in establishing PIN1 polarity in Arabidopsis thaliana by pharmacological and genetic approaches. We identified the compound endosidin 8 (ES8), which selectively interferes with PIN1 basal polarity without altering the polarity of apical proteins. ES8 alters the auxin distribution pattern in the root and induces a strong developmental phenotype, including reduced root length. The ARF-GEF-defective mutants gnom-like 1 (gnl1-1) and gnom (van7) are significantly resistant to ES8. The compound does not affect recycling or vacuolar trafficking of PIN1 but leads to its intracellular accumulation, resulting in loss of PIN1 basal polarity at the plasma membrane. Our data confirm a role for GNOM in endoplasmic reticulum (ER)-Golgi trafficking and reveal that a GNL1/GNOM-mediated early secretory pathway selectively regulates PIN1 basal polarity establishment in a manner essential for normal plant development.

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