purine-cytosine permease family protein is part of a family of transporters of purine- and pyrimidine-derivatives such as adenine, guanine, cytosine, and vitamin B6
nucleobase-cation-symport-1 (NCS1) transporter CobB-like; solute-binding domain; This NCS1 ...
22-457
7.61e-78
nucleobase-cation-symport-1 (NCS1) transporter CobB-like; solute-binding domain; This NCS1 subfamily includes Escherichia coli CodB (cytosine permease), and the Saccharomyces cerevisiae transporters: Fcy21p (Purine-cytosine permease), and vitamin B6 transporter Tpn1. NCS1s are essential components of salvage pathways for nucleobases and related metabolites; their known substrates include allantoin, uracil, thiamine, and nicotinamide riboside. NCS1s belong to a superfamily which also contains the solute carrier 5 family sodium/glucose transporters (SLC5s), and solute carrier 6 family neurotransmitter transporters (SLC6s).
Pssm-ID: 271377 [Multi-domain] Cd Length: 406 Bit Score: 248.30 E-value: 7.61e-78
nucleobase-cation-symport-1 (NCS1) transporter CobB-like; solute-binding domain; This NCS1 ...
22-457
7.61e-78
nucleobase-cation-symport-1 (NCS1) transporter CobB-like; solute-binding domain; This NCS1 subfamily includes Escherichia coli CodB (cytosine permease), and the Saccharomyces cerevisiae transporters: Fcy21p (Purine-cytosine permease), and vitamin B6 transporter Tpn1. NCS1s are essential components of salvage pathways for nucleobases and related metabolites; their known substrates include allantoin, uracil, thiamine, and nicotinamide riboside. NCS1s belong to a superfamily which also contains the solute carrier 5 family sodium/glucose transporters (SLC5s), and solute carrier 6 family neurotransmitter transporters (SLC6s).
Pssm-ID: 271377 [Multi-domain] Cd Length: 406 Bit Score: 248.30 E-value: 7.61e-78
nucleobase-cation-symport-1 (NCS1) transporters; solute-binding domain; NCS1s are essential ...
34-452
1.02e-26
nucleobase-cation-symport-1 (NCS1) transporters; solute-binding domain; NCS1s are essential components of salvage pathways for nucleobases and related metabolites; their known substrates include allantoin, uracil, thiamine, and nicotinamide riboside. This family includes Microbacterium liquefaciens Mhp1, a transporter that mediates the uptake of indolyl methyl- and benzyl-hydantoins as part of a metabolic salvage pathway for their conversion to amino acids. It also includes various Saccharomyces cerevisiae transporters: Fcy21p (Purine-cytosine permease), vitamin B6 transporter Tpn1, nicotinamide riboside transporter 1 (Nrt1p, also called Thi71p), Dal4p (allantoin permease), Fui1p (uridine permease), and Fur4p (uracil permease). Mhp1 has 12 transmembrane (TM) helices (an inverted topology repeat: TMs1-5 and TMs6-10, and TMs11-12; TMs numbered to conform to the solute carrier 6 family Aquifex aeolicus LeuT). NCS1s belong to a superfamily which also contains the solute carrier 5 family sodium/glucose transporters (SLC5s), and SLC6 neurotransmitter transporters.
Pssm-ID: 271358 Cd Length: 414 Bit Score: 111.60 E-value: 1.02e-26
uncharacterized nucleobase-cation-symport-1 (NCS1) transporter subfamily, YbbW-like; solute-binding domain; NCS1s are essential components of salvage pathways for nucleobases and related metabolites; their known substrates include allantoin, uracil, thiamine, and nicotinamide riboside. This subfamily includes the putative allantoin transporter Escherichia coli YbbW (also known as GlxB2). NCS1s belong to a superfamily which also contains the solute carrier 5 family sodium/glucose transporters (SLC5s), and solute carrier 6 family neurotransmitter transporters (SLC6s).
Pssm-ID: 271378 Cd Length: 456 Bit Score: 86.47 E-value: 3.95e-18
nucleobase-cation-symport-1 (NCS1) transporter NRT1-like; solute-binding domain; This fungal ...
16-459
2.11e-09
nucleobase-cation-symport-1 (NCS1) transporter NRT1-like; solute-binding domain; This fungal NCS1 subfamily includes various Saccharomyces cerevisiae transporters: nicotinamide riboside transporter 1 (Nrt1p, also called Thi71p), Dal4p (allantoin permease), Fui1p (uridine permease), Fur4p (uracil permease), and Thi7p (thiamine transporter). NCS1s are essential components of salvage pathways for nucleobases and related metabolites. NCS1s belong to a superfamily which also contains the solute carrier 5 family sodium/glucose transporters, and solute carrier 6 family neurotransmitter transporters.
Pssm-ID: 271375 Cd Length: 480 Bit Score: 59.45 E-value: 2.11e-09
nucleobase-cation-symport-1 (NCS1) transporter Mhp1-like; solute-binding domain; This NCS1 ...
23-432
1.59e-08
nucleobase-cation-symport-1 (NCS1) transporter Mhp1-like; solute-binding domain; This NCS1 subfamily includes Microbacterium liquefaciens Mhp1, and various uncharacterized NCS1s. Mhp1 mediates the uptake of indolyl methyl- and benzyl-hydantoins as part of a metabolic salvage pathway for their conversion to amino acids. Mhp1 has 12 transmembrane (TM) helices (an inverted topology repeat: TMs1-5 and TMs6-10, and TMs11-12; TMs numbered to conform to the Solute carrier 6 (SLC6) family Aquifex aeolicus LeuT). NCS1s are essential components of salvage pathways for nucleobases and related metabolites; their other known substrates include allantoin, uracil, thiamine, and nicotinamide riboside. NCS1s belong to a superfamily which also contains the solute carrier 5 family sodium/glucose transporters (SLC5s), and SLC6 neurotransmitter transporters.
Pssm-ID: 271376 Cd Length: 451 Bit Score: 56.67 E-value: 1.59e-08
uncharacterized nucleobase-cation-symport-1 (NCS1) transporter subfamily; solute-binding domain; NCS1s are essential components of salvage pathways for nucleobases and related metabolites; their known substrates include allantoin, uracil, thiamine, and nicotinamide riboside. NCS1s belong to a superfamily which also contains the solute carrier 5 family sodium/glucose transporters (SLC5s), and solute carrier 6 family neurotransmitter transporters (SLC6s).
Pssm-ID: 271404 Cd Length: 461 Bit Score: 47.56 E-value: 1.24e-05
Database: CDSEARCH/cdd Low complexity filter: no Composition Based Adjustment: yes E-value threshold: 0.01
References:
Wang J et al. (2023), "The conserved domain database in 2023", Nucleic Acids Res.51(D)384-8.
Lu S et al. (2020), "The conserved domain database in 2020", Nucleic Acids Res.48(D)265-8.
Marchler-Bauer A et al. (2017), "CDD/SPARCLE: functional classification of proteins via subfamily domain architectures.", Nucleic Acids Res.45(D)200-3.
of the residues that compose this conserved feature have been mapped to the query sequence.
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Functional characterization of the conserved domain architecture found on the query.
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