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2D3A

Crystal Structure of the Maize Glutamine Synthetase complexed with ADP and Methionine sulfoximine Phosphate

Summary for 2D3A
Entry DOI10.2210/pdb2d3a/pdb
Related2D3B 2D3C
Descriptorglutamine synthetase, MANGANESE (II) ION, L-METHIONINE-S-SULFOXIMINE PHOSPHATE, ... (5 entities in total)
Functional Keywordsglutamine synthetase maize, ligase
Biological sourceZea mays
Cellular locationCytoplasm: P38561
Total number of polymer chains10
Total formula weight401162.59
Authors
Unno, H.,Uchida, T.,Sugawara, H.,Kurisu, G.,Sugiyama, T.,Yamaya, T.,Sakakibara, H.,Hase, T.,Kusunoki, M. (deposition date: 2005-09-26, release date: 2006-07-18, Last modification date: 2024-03-13)
Primary citationUnno, H.,Uchida, T.,Sugawara, H.,Kurisu, G.,Sugiyama, T.,Yamaya, T.,Sakakibara, H.,Hase, T.,Kusunoki, M.
Atomic Structure of Plant Glutamine Synthetase: A KEY ENZYME FOR PLANT PRODUCTIVITY
J.Biol.Chem., 281:29287-29296, 2006
Cited by
PubMed Abstract: Plants provide nourishment for animals and other heterotrophs as the sole primary producer in the food chain. Glutamine synthetase (GS), one of the essential enzymes for plant autotrophy catalyzes the incorporation of ammonia into glutamate to generate glutamine with concomitant hydrolysis of ATP, and plays a crucial role in the assimilation and re-assimilation of ammonia derived from a wide variety of metabolic processes during plant growth and development. Elucidation of the atomic structure of higher plant GS is important to understand its detailed reaction mechanism and to obtain further insight into plant productivity and agronomical utility. Here we report the first crystal structures of maize (Zea mays L.) GS. The structure reveals a unique decameric structure that differs significantly from the bacterial GS structure. Higher plants have several isoenzymes of GS differing in heat stability and catalytic properties for efficient responses to variation in the environment and nutrition. A key residue responsible for the heat stability was found to be Ile-161 in GS1a. The three structures in complex with substrate analogues, including phosphinothricin, a widely used herbicide, lead us to propose a mechanism for the transfer of phosphate from ATP to glutamate and to interpret the inhibitory action of phosphinothricin as a guide for the development of new potential herbicides.
PubMed: 16829528
DOI: 10.1074/jbc.M601497200
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.63 Å)
Structure validation

226707

數據於2024-10-30公開中

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