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1MR4

Solution Structure of NaD1 from Nicotiana alata

Summary for 1MR4
Entry DOI10.2210/pdb1mr4/pdb
DescriptorNicotiana alata plant defensin 1 (NaD1) (1 entity in total)
Functional Keywordscysteine-stabilized alpha-beta motif, plant defensin fold, plant protein
Biological sourceNicotiana tabacum (common tobacco)
Cellular locationSecreted, cell wall (By similarity): P32026
Total number of polymer chains1
Total formula weight5315.38
Authors
Lay, F.T.,Schirra, H.J.,Scanlon, M.J.,Anderson, M.A.,Craik, D.J. (deposition date: 2002-09-18, release date: 2003-09-18, Last modification date: 2024-10-23)
Primary citationLay, F.T.,Schirra, H.J.,Scanlon, M.J.,Anderson, M.A.,Craik, D.J.
The Three-dimensional Solution Structure of NaD1, a New Floral Defensin from Nicotiana alata and its Application to a Homology Model of the Crop Defense Protein alfAFP
J.MOL.BIOL., 325:175-188, 2003
Cited by
PubMed Abstract: NMR spectroscopy and simulated annealing calculations have been used to determine the three-dimensional structure of NaD1, a novel antifungal and insecticidal protein isolated from the flowers of Nicotiana alata. NaD1 is a basic, cysteine-rich protein of 47 residues and is the first example of a plant defensin from flowers to be characterized structurally. Its three-dimensional structure consists of an alpha-helix and a triple-stranded antiparallel beta-sheet that are stabilized by four intramolecular disulfide bonds. NaD1 features all the characteristics of the cysteine-stabilized alphabeta motif that has been described for a variety of proteins of differing functions ranging from antibacterial insect defensins and ion channel-perturbing scorpion toxins to an elicitor of the sweet taste response. The protein is biologically active against insect pests, which makes it a potential candidate for use in crop protection. NaD1 shares 31% sequence identity with alfAFP, an antifungal protein from alfalfa that confers resistance to a fungal pathogen in transgenic potatoes. The structure of NaD1 was used to obtain a homology model of alfAFP, since NaD1 has the highest level of sequence identity with alfAFP of any structurally characterized antifungal defensin. The structures of NaD1 and alfAFP were used in conjunction with structure-activity data for the radish defensin Rs-AFP2 to provide an insight into structure-function relationships. In particular, a putative effector site was identified in the structure of NaD1 and in the corresponding homology model of alfAFP.
PubMed: 12473460
DOI: 10.1016/S0022-2836(02)01103-8
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

243911

数据于2025-10-29公开中

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