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Structural Basis for Silicic Acid Uptake by Higher Plants
Affiliation:1. Biosciences Institute, The Medical School, Newcastle University, Newcastle upon Tyne NE2 4HH, UK;2. School of Chemistry, University of Southampton, Southampton SO17 1BJ, UK;3. Physical and Theoretical Chemistry Laboratory, University of Oxford, Oxford OX1 3QZ, UK;4. The Kavli Institute for Nanoscience Discovery, South Parks Road, Oxford OX1 3QU, UK;5. The Department of Biochemistry, University of Oxford, Oxford OX1 3QU, UK
Abstract:Many of the world's most important food crops such as rice, barley and maize accumulate silicon (Si) to high levels, resulting in better plant growth and crop yields. The first step in Si accumulation is the uptake of silicic acid by the roots, a process mediated by the structurally uncharacterised NIP subfamily of aquaporins, also named metalloid porins. Here, we present the X-ray crystal structure of the archetypal NIP family member from Oryza sativa (OsNIP2;1). The OsNIP2;1 channel is closed in the crystal structure by the cytoplasmic loop D, which is known to regulate channel opening in classical plant aquaporins. The structure further reveals a novel, five-residue extracellular selectivity filter with a large diameter. Unbiased molecular dynamics simulations show a rapid opening of the channel and visualise how silicic acid interacts with the selectivity filter prior to transmembrane diffusion. Our results will enable detailed structure–function studies of metalloid porins, including the basis of their substrate selectivity.
Keywords:silicic acid transport  NIP channel  aquaporin  X-ray crystal structure  molecular dynamics  NIP"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  k0035"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Nodulin 26-like Intrinsic Protein  Si"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  k0045"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  silicon  MD"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  k0055"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  molecular dynamics
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