Structure of paenibacillus polymyxa gs bound to met-sox-p-adp (transition state complex) to 1.98 angstom
PDB DOI: 10.2210/pdb7tdp/pdb
Classification: LIGASE Organism(s): Paenibacillus Polymyxa
Deposited: 2022-01-02 Deposition Author(s): Schumacher, M.A.
Structure of paenibacillus polymyxa gs bound to met-sox-p-adp (transition state complex) to 1.98 angstom
Primary Citation of Related Structures: 7TDP
Proteins | ||||
---|---|---|---|---|
Molecule | Chains | Sequence Length | Organism | Sequence |
Glutamine synthetase | A | 442 | Paenibacillus Polymyxa | MSYTREDIIRIAEEENVRFIRLQFTDLLGTIKNVEIPVSQLEKALDNKMMFDGSSIEGYVRIEESDMYLYPDLDTWVVFPWVTSDRVARLICDIYKPDGSPFAGDPRGILKRVLKEAEELGYTSMNVGPEPEFFLFKTDEKGDPTTELNDQGGYFDLAPMDLGENCRREIVLKLEEMGFEIEASHHEVAPGQHEIDFKYADAVKAADQIQTFKLVVKTIARQHGLHATFMPKPLFGVNGSGMHCNQSLFKDNENVFYDETDELGLSQTARHYMAGILKHARAMAAITNPTVNSYKRLVPGYEAPCYVAWSASNRSPMIRIPASRGLSTRVEVRNPDPAANPYLALAVMLRAGLDGIKRQMALPAPIDRNIYVMSEEERIEEGIPSLPADLKEALSELIRSEVISDALGDHALAYFYELKEIEWDMYRTQVHQWERDQYLTLY |
Glutamine synthetase | C | 442 | Paenibacillus Polymyxa | MSYTREDIIRIAEEENVRFIRLQFTDLLGTIKNVEIPVSQLEKALDNKMMFDGSSIEGYVRIEESDMYLYPDLDTWVVFPWVTSDRVARLICDIYKPDGSPFAGDPRGILKRVLKEAEELGYTSMNVGPEPEFFLFKTDEKGDPTTELNDQGGYFDLAPMDLGENCRREIVLKLEEMGFEIEASHHEVAPGQHEIDFKYADAVKAADQIQTFKLVVKTIARQHGLHATFMPKPLFGVNGSGMHCNQSLFKDNENVFYDETDELGLSQTARHYMAGILKHARAMAAITNPTVNSYKRLVPGYEAPCYVAWSASNRSPMIRIPASRGLSTRVEVRNPDPAANPYLALAVMLRAGLDGIKRQMALPAPIDRNIYVMSEEERIEEGIPSLPADLKEALSELIRSEVISDALGDHALAYFYELKEIEWDMYRTQVHQWERDQYLTLY |
Glutamine synthetase | B | 442 | Paenibacillus Polymyxa | MSYTREDIIRIAEEENVRFIRLQFTDLLGTIKNVEIPVSQLEKALDNKMMFDGSSIEGYVRIEESDMYLYPDLDTWVVFPWVTSDRVARLICDIYKPDGSPFAGDPRGILKRVLKEAEELGYTSMNVGPEPEFFLFKTDEKGDPTTELNDQGGYFDLAPMDLGENCRREIVLKLEEMGFEIEASHHEVAPGQHEIDFKYADAVKAADQIQTFKLVVKTIARQHGLHATFMPKPLFGVNGSGMHCNQSLFKDNENVFYDETDELGLSQTARHYMAGILKHARAMAAITNPTVNSYKRLVPGYEAPCYVAWSASNRSPMIRIPASRGLSTRVEVRNPDPAANPYLALAVMLRAGLDGIKRQMALPAPIDRNIYVMSEEERIEEGIPSLPADLKEALSELIRSEVISDALGDHALAYFYELKEIEWDMYRTQVHQWERDQYLTLY |
Method: X-RAY DIFFRACTION
Deposited Date: 2022-01-02 Deposition Author(s): Schumacher, M.A.