1RWB PDB NFT
Cooperative Effect of Two Surface Amino Acid Mutations (Q252L and E170K) of Glucose Dehydrogenase from Bacillus megaterium IWG3 for the stabilization of Oligomeric State
MOLNFT AF v1 smart contract in GenesisL1 blockchain:
0xDE3723766Bc32dcACD03C17BaA400A7B36837Eba
IPFS of NFT metadata:
bafybeiakf2vsu27zszdexhba57axizcgv2oyzbsldlp6i4cebnbyvvcj7m/metadata.json
IPFS of structure file:
bafybeiba35er3ija54zpsddmwdoz4d644pmevbxgurfu54qyowne652nvu/1rwb.pdb
MOLNFT 1RWB research and analysis (ICN3D with VR)
FASTA sequences
>1rwb_A mol:protein length:261 Glucose 1-dehydrogenase
MYKDLEGKVVVITGSSTGLGKSMAIRFATEKAKVVVNYRSKEDEANSVLEEIKKVGGEAIAVKGDVTVESDVINLVQSAIKEFGKLDVMINNAGLENPVSSHEMSLSDWNKVIDTNLTGAFLGSREAIKYFVENDIKGTVINMSSVHEKIPWPLFVHYAASKGGMKLMTKTLALEYAPKGIRVNNIGPGAINTPINAEKFADPEQRADVESMIPMGYIGEPEEIAAVAAWLASSEASYVTGITLFADGGMTLYPSFQAGRG
>1rwb_B mol:protein length:261 Glucose 1-dehydrogenase
MYKDLEGKVVVITGSSTGLGKSMAIRFATEKAKVVVNYRSKEDEANSVLEEIKKVGGEAIAVKGDVTVESDVINLVQSAIKEFGKLDVMINNAGLENPVSSHEMSLSDWNKVIDTNLTGAFLGSREAIKYFVENDIKGTVINMSSVHEKIPWPLFVHYAASKGGMKLMTKTLALEYAPKGIRVNNIGPGAINTPINAEKFADPEQRADVESMIPMGYIGEPEEIAAVAAWLASSEASYVTGITLFADGGMTLYPSFQAGRG
>1rwb_E mol:protein length:261 Glucose 1-dehydrogenase
MYKDLEGKVVVITGSSTGLGKSMAIRFATEKAKVVVNYRSKEDEANSVLEEIKKVGGEAIAVKGDVTVESDVINLVQSAIKEFGKLDVMINNAGLENPVSSHEMSLSDWNKVIDTNLTGAFLGSREAIKYFVENDIKGTVINMSSVHEKIPWPLFVHYAASKGGMKLMTKTLALEYAPKGIRVNNIGPGAINTPINAEKFADPEQRADVESMIPMGYIGEPEEIAAVAAWLASSEASYVTGITLFADGGMTLYPSFQAGRG
>1rwb_F mol:protein length:261 Glucose 1-dehydrogenase
MYKDLEGKVVVITGSSTGLGKSMAIRFATEKAKVVVNYRSKEDEANSVLEEIKKVGGEAIAVKGDVTVESDVINLVQSAIKEFGKLDVMINNAGLENPVSSHEMSLSDWNKVIDTNLTGAFLGSREAIKYFVENDIKGTVINMSSVHEKIPWPLFVHYAASKGGMKLMTKTLALEYAPKGIRVNNIGPGAINTPINAEKFADPEQRADVESMIPMGYIGEPEEIAAVAAWLASSEASYVTGITLFADGGMTLYPSFQAGRG
References and links
Current molecular structure file and data about current molecular structure file and NFT token based on it with
PDBID: 1RWB
TITLE: Cooperative Effect of Two Surface Amino Acid Mutations (Q252L and E170K) of Glucose Dehydrogenase from Bacillus megaterium IWG3 for the stabilization of Oligomeric State
DOI: 10.1128/AEM.71.6.3285-3293.2005
AUTHORS: Baik, S.-H., Michel, F., Haser, R., Harayama, S.
ACCESSION DATE: 12/16/03
Obtained at RCSB PDB https://rcsb.org
RCSB Link: https://www.rcsb.org/structure/1RWB