4.8 Article

A Munc13-like protein in Arabidopsis mediates H+-ATPase translocation that is essential for stomatal responses

Journal

NATURE COMMUNICATIONS
Volume 4, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms3215

Keywords

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Funding

  1. Ministry of Education, Science and Culture of Japan [21114002, 24114007, 22114505, 24228008, 25711017, 24780046]
  2. Program for Promotion of Basic and Applied Research for Innovations in Bio-Oriented Industry
  3. Japan Science and Technology Agency
  4. Fumi Yamamura Memorial Foundation for Female Natural Scientists
  5. Grants-in-Aid for Scientific Research [24780046, 24114007, 21114002, 22114505, 25711017] Funding Source: KAKEN

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Plants control CO2 uptake and water loss by modulating the aperture of stomata located in the epidermis. Stomatal opening is initiated by the activation of H+-ATPases in the guard-cell plasma membrane. In contrast to regulation of H+-ATPase activity, little is known about the translocation of the guard cell H+-ATPase to the plasma membrane. Here we describe the isolation of an Arabidopsis gene, PATROL1, that controls the translocation of a major H+-ATPase, AHA1, to the plasma membrane. PATROL1 encodes a protein with a MUN domain, known to mediate synaptic priming in neuronal exocytosis in animals. Environmental stimuli change the localization of plasma membrane-associated PATROL1 to an intracellular compartment. Plasma membrane localization of AHA1 and stomatal opening require the association of PATROL1 with AHA1. Increased stomatal opening responses in plants overexpressing PATROL1 enhance the CO2 assimilation rate, promoting plant growth.

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