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8ZVF

AtALMT9 plus high malate in low pH

Summary for 8ZVF
Entry DOI10.2210/pdb8zvf/pdb
EMDB information60510
DescriptorAluminum-activated malate transporter 9, 1,2-DILAUROYL-SN-GLYCERO-3-PHOSPHATE (2 entities in total)
Functional Keywordschannel, transport protein
Biological sourceArabidopsis thaliana (thale cress)
Total number of polymer chains2
Total formula weight135313.36
Authors
Gong, D.S. (deposition date: 2024-06-11, release date: 2024-09-25)
Primary citationQian, D.,Chai, Y.,Li, W.,Cui, B.,Lin, S.,Wang, Z.,Wang, C.,Qu, L.Q.,Gong, D.
Structural insight into the Arabidopsis vacuolar anion channel ALMT9 shows clade specificity.
Cell Rep, 43:114731-114731, 2024
Cited by
PubMed Abstract: The Arabidopsis thaliana aluminum-activated malate transporter 9 (AtALMT9) functions as a vacuolar chloride channel that regulates the stomatal aperture. Here, we present the cryoelectron microscopy (cryo-EM) structures of AtALMT9 in three distinct states. AtALMT9 forms a dimer, and the pore is lined with four positively charged rings. The apo-AtALMT9 state shows a putative endogenous citrate obstructing the pore, where two W120 constriction residues enclose a gate with a pore radius of approximately 1.8 Å, representing an open state. Interestingly, channel closure is solely controlled by W120. Compared to wild-type plants, the W120A mutant exhibits more sensitivity to drought stress and is unable to restore the visual phenotype on leaves upon water recovery, reflecting persistent stomatal opening. Furthermore, notable variations are noted in channel gating and substrate recognition of Glycine max ALMT12, AtALMT9, and AtALMT1. In summary, our investigation enhances comprehension of the interplay between structure and function within the ALMT family.
PubMed: 39269901
DOI: 10.1016/j.celrep.2024.114731
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.59 Å)
Structure validation

235458

건을2025-04-30부터공개중

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