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Searching for up to 100 curated homologs for WP_090275879.1 NCBI__GCF_900105005.1:WP_090275879.1 (334 a.a.)

Found high-coverage hits (≥70%) to 63 curated proteins.

You can add additional sequences or change the %identity threshold for inclusion. Once you have selected sequences, you can build an alignment and a tree.

Hits with ≥ 30% identity

TC 3.A.1.24.5 / Q9HT70 Methionine import ATP-binding protein MetN 2, component of L-Histidine uptake porter, MetIQN from Pseudomonas aeruginosa (strain ATCC 15692 / PAO1 / 1C / PRS 101 / LMG 12228)
    79% identity, 100% coverage of query (533 bits)

METN_BACSU / O32169 Methionine import ATP-binding protein MetN; EC 7.4.2.11 from Bacillus subtilis (strain 168) (see paper)
TC 3.A.1.24.2 / O32169 MetN (C) (aka YusC), component of The L- and D-methionine porter (also transports methionine sulfoxide from Bacillus subtilis subsp. subtilis str. 168 (see 2 papers)
    49% identity, 94% coverage of query (311 bits)

MetN / b0199 L-methionine/D-methionine ABC transporter ATP binding subunit (EC 7.4.2.11) from Escherichia coli K-12 substr. MG1655 (see 4 papers)
MetN / P30750 L-methionine/D-methionine ABC transporter ATP binding subunit (EC 7.4.2.11) from Escherichia coli (strain K12) (see 3 papers)
METN_ECOLI / P30750 Methionine import ATP-binding protein MetN; EC 7.4.2.11 from Escherichia coli (strain K12) (see 7 papers)
P30750 ABC-type methionine transporter (subunit 2/2) (EC 7.4.2.11) from Escherichia coli (see 3 papers)
TC 3.A.1.24.1 / P30750 MetN, D-methionine transport ATP-binding protein, component of The L- and D-methionine porter (also transports formyl-L-methionine and other methionine derivatives) (Zhang et al., 2003). The 3.7A structure of MetNI has been solved. An allosteric regulatory mechanism operates at the level of transport activity, so increased intracellular levels of the transported ligand stabilize an inward-facing, ATPase-inactive state of MetNI to inhibit further ligand translocation into the cell from Escherichia coli (see 5 papers)
    48% identity, 99% coverage of query (300 bits)

6cvlD / P30750 Crystal structure of the escherichia coli atpgs-bound metni methionine abc transporter in complex with its metq binding protein (see paper)
    47% identity, 99% coverage of query (298 bits)

3tuzC Inward facing conformations of the metni methionine abc transporter: cy5 semet soak crystal form
    47% identity, 99% coverage of query (298 bits)

3tuiC Inward facing conformations of the metni methionine abc transporter: cy5 native crystal form
    47% identity, 99% coverage of query (298 bits)

TC 3.A.1.24.3 / Q8K8K8 AtmD (MetN), component of The methionine porter, AtmBDE from Streptococcus pyogenes serotype M3 (see 2 papers)
    44% identity, 100% coverage of query (276 bits)

TC 3.A.1.24.4 / Q8NSN2 Methionine import ATP-binding protein metN, component of L-Methionine uptake porter, MetQNI from Corynebacterium glutamicum (see paper)
    45% identity, 93% coverage of query (258 bits)

3c41J / D0VWX4 Abc protein artp in complex with amp-pnp/mg2+
    44% identity, 72% coverage of query (198 bits)

3c4jA Abc protein artp in complex with atp-gamma-s
    44% identity, 72% coverage of query (198 bits)

2olkA Abc protein artp in complex with adp-beta-s
    44% identity, 72% coverage of query (198 bits)

2oljA Abc protein artp in complex with adp/mg2+
    44% identity, 72% coverage of query (198 bits)

4ymuJ / Q8RCC2 Crystal structure of an amino acid abc transporter complex with arginines and atps (see paper)
    42% identity, 71% coverage of query (191 bits)

GLNQ_BACSU / O34677 Glutamine transport ATP-binding protein GlnQ; EC 7.4.2.- from Bacillus subtilis (strain 168) (see paper)
    44% identity, 72% coverage of query (187 bits)

TCYN_BACSU / O34900 L-cystine import ATP-binding protein TcyN; EC 7.4.2.- from Bacillus subtilis (strain 168) (see 2 papers)
TC 3.A.1.3.13 / O34900 TcyN (YtmN), component of Uptake system for L-cystine (Km=2.5 μM), L-cystathionine, L-djenkolate ( 2-amino-3-[(2-amino-3-hydroxy-3-oxopropyl)sulfanylmethylsulfanyl] propanoic acid), and S-methyl-L-cysteine from Bacillus subtilis (see 4 papers)
    42% identity, 72% coverage of query (187 bits)

YXEO_BACSU / P54954 Probable amino-acid import ATP-binding protein YxeO; EC 7.4.2.- from Bacillus subtilis (strain 168) (see paper)
    42% identity, 72% coverage of query (180 bits)

ARTM_BACSU / P54537 Arginine transport ATP-binding protein ArtM from Bacillus subtilis (strain 168) (see paper)
    40% identity, 72% coverage of query (180 bits)

GLUA_CORGL / P48243 Glutamate transport ATP-binding protein GluA; Glutamate uptake system protein GluA; EC 7.4.2.1 from Corynebacterium glutamicum (strain ATCC 13032 / DSM 20300 / JCM 1318 / BCRC 11384 / CCUG 27702 / LMG 3730 / NBRC 12168 / NCIMB 10025 / NRRL B-2784 / 534) (see paper)
TC 3.A.1.3.9 / P48243 GluA aka CGL1950, component of Glutamate porter from Corynebacterium glutamicum (Brevibacterium flavum) (see 2 papers)
    43% identity, 72% coverage of query (178 bits)

TC 3.A.1.3.12 / P73721 BgtA aka SLR1735, component of Arginine/lysine/histidine/glutamine porter (see paper)
    42% identity, 72% coverage of query (177 bits)

SMc02121 ABC transporter for L-Glutamine, L-Histidine, and other L-amino acids, ATPase component from Sinorhizobium meliloti 1021
    41% identity, 72% coverage of query (176 bits)

YhdZ / b3271 putative ABC transporter ATP-binding subunit YhdZ from Escherichia coli K-12 substr. MG1655 (see 4 papers)
yhdZ / RF|NP_417737 uncharacterized amino-acid ABC transporter ATP-binding protein yhdZ from Escherichia coli K12 (see 3 papers)
    41% identity, 72% coverage of query (176 bits)

TC 3.A.1.3.8 / Q52815 AapP, component of General L-amino acid porter; transports basic and acidic amino acids preferentially, but also transports aliphatic amino acids (catalyzes both uptake and efflux) from Rhizobium leguminosarum (biovar viciae) (see 2 papers)
aapP / CAA57936.1 general amino acid ABC type transporter from Rhizobium leguminosarum (see paper)
    41% identity, 72% coverage of query (175 bits)

TC 3.A.1.3.25 / Q9CES4 Glutamine ABC transporter ATP-binding protein, component of Glutamine transporter, GlnQP. Takes up glutamine, asparagine and glutamate which compete for each other for binding both substrate and the transmembrane protein constituent of the system (Fulyani et al. 2015). Tandem substrate binding domains (SBDs) differ in substrate specificity and affinity, allowing cells to efficiently accumulate different amino acids via a single ABC transporter. Analysis revealed the roles of individual residues in determining the substrate affinity from Lactococcus lactis subsp. lactis (strain IL1403)
    41% identity, 72% coverage of query (175 bits)

TC 3.A.1.3.14 / P39456 TcyC (YckI), component of Uptake system for L-cystine from Bacillus subtilis (see 7 papers)
    39% identity, 72% coverage of query (175 bits)

HISP_SALTY / P02915 Histidine/lysine/arginine/ornithine transport ATP-binding protein HisP; EC 7.4.2.1 from Salmonella typhimurium (strain LT2 / SGSC1412 / ATCC 700720) (see 4 papers)
TC 3.A.1.3.1 / P02915 HisP aka STM2351, component of Histidine/arginine/lysine/ornithine porter (Heuveling et al. 2014). In contrast to some homologous homodimeric systems, the heterodimeric histidine transporter of Salmonella enterica Typhimurium from Salmonella typhimurium (see 3 papers)
RF|NP_461293.1 histidine transport atp-binding protein hisp from Salmonella enterica subsp. enterica serovar Typhimurium (see 4 papers)
    43% identity, 70% coverage of query (162 bits)

1b0uA / P02915 Atp-binding subunit of the histidine permease from salmonella typhimurium (see paper)
    43% identity, 70% coverage of query (162 bits)

8z1wD / P37313 Cryo-em structure of escherichia coli dppbcdf complex bound to atpgammas
    34% identity, 71% coverage of query (154 bits)

8z1xD Cryo-em structure of escherichia coli dppbcdf complex bound to amppnp
    34% identity, 71% coverage of query (154 bits)

8j5qD / P9WQJ5 Cryo-em structure of mycobacterium tuberculosis oppabcd in the pre- translocation state (see paper)
    39% identity, 72% coverage of query (154 bits)

8j5tD Cryo-em structure of mycobacterium tuberculosis oppabcd in the catalytic intermediate state
    38% identity, 72% coverage of query (152 bits)

8j5sD Cryo-em structure of mycobacterium tuberculosis oppabcd in the pre- catalytic intermediate state
    38% identity, 72% coverage of query (152 bits)

1vciA / O57758 Crystal structure of the atp-binding cassette of multisugar transporter from pyrococcus horikoshii ot3 complexed with atp (see paper)
    33% identity, 74% coverage of query (138 bits)

2d62A / O57933 Crystal structure of multiple sugar binding transport atp-binding protein
    31% identity, 80% coverage of query (137 bits)

7chaI / Q9HVW1 Cryo-em structure of p.Aeruginosa mlafebd with amppnp (see paper)
    35% identity, 70% coverage of query (134 bits)

Q8TTZ3 ABC-type molybdate transporter (EC 7.3.2.5) from Methanosarcina acetivorans (see paper)
3d31A / Q8TTZ3 Modbc from methanosarcina acetivorans (see paper)
    31% identity, 72% coverage of query (132 bits)

1g291 / Q9YGA6 Malk (see paper)
    32% identity, 82% coverage of query (131 bits)

1oxvD Crystal structure of glcv, the abc-atpase of the glucose abc transporter from sulfolobus solfataricus
    31% identity, 77% coverage of query (129 bits)

1oxvA Crystal structure of glcv, the abc-atpase of the glucose abc transporter from sulfolobus solfataricus
    31% identity, 77% coverage of query (129 bits)

GLCV_SACS2 / Q97UY8 Glucose import ATP-binding protein GlcV; EC 7.5.2.- from Saccharolobus solfataricus (strain ATCC 35092 / DSM 1617 / JCM 11322 / P2) (Sulfolobus solfataricus) (see 3 papers)
TC 3.A.1.1.13 / Q97UY8 GlcV, component of Glucose, mannose, galactose porter from Sulfolobus solfataricus (see 3 papers)
1oxuA / Q97UY8 Crystal structure of glcv, the abc-atpase of the glucose abc transporter from sulfolobus solfataricus (see paper)
    31% identity, 77% coverage of query (129 bits)

2pmkA Crystal structures of an isolated abc-atpase in complex with tnp-adp
    34% identity, 74% coverage of query (127 bits)

2ff7A The abc-atpase of the abc-transporter hlyb in the adp bound state
    34% identity, 74% coverage of query (127 bits)

3b5jA Crystal structures of the s504a mutant of an isolated abc-atpase in complex with tnp-adp
    34% identity, 74% coverage of query (126 bits)

8wm7C / Q8YZ76 Cryo-em structure of cyanobacterial nitrate/nitrite transporter nrtbcd in complex with signalling protein pii (see paper)
    31% identity, 85% coverage of query (124 bits)

7ch8I Cryo-em structure of p.Aeruginosa mlafebd with adp-v
    35% identity, 70% coverage of query (124 bits)

1xefA Crystal structure of the atp/mg2+ bound composite dimer of hlyb-nbd
    34% identity, 74% coverage of query (123 bits)

8wooA Structure of the wild-type arabidopsis abcb19 in the brassinolide and amp-pnp bound state
    36% identity, 71% coverage of query (122 bits)

8womA / Q9LJX0 Structure of the wild-type arabidopsis abcb19 in the brassinolide- bound state (see paper)
    36% identity, 71% coverage of query (122 bits)

8wp0A Structure of the arabidopsis e529q/e1174q abcb19 in the atp bound state
    35% identity, 71% coverage of query (121 bits)

sugC / P9WQI3 ABC-type trehalose transporter ATP-binding protein from Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) (see 2 papers)
SUGC_MYCTU / P9WQI3 Trehalose import ATP-binding protein SugC; MtbSugC; Nucleotide-binding domain of SugABC transporter; NBD of SugABC transporter; SugABC transporter ATPase SugC; EC 7.5.2.- from Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) (see 2 papers)
TC 3.A.1.1.31 / O50454 PROBABLE SUGAR-TRANSPORT ATP-BINDING PROTEIN ABC TRANSPORTER SUGC, component of The trehalose-recycling ABC transporter, LpqY-SugA-SugB-SugC (essential for virulence) from Mycobacterium tuberculosis (see 2 papers)
    33% identity, 90% coverage of query (118 bits)

4fwiB / Q8RDH4 Crystal structure of the nucleotide-binding domain of a dipeptide abc transporter (see paper)
    32% identity, 72% coverage of query (112 bits)

DPPD_CALS4 / Q8RDH4 Dipeptide transport ATP-binding protein DppD; EC 7.4.2.9 from Caldanaerobacter subterraneus subsp. tengcongensis (strain DSM 15242 / JCM 11007 / NBRC 100824 / MB4) (Thermoanaerobacter tengcongensis) (see paper)
    32% identity, 72% coverage of query (112 bits)

TGD3_ARATH / Q9AT00 Protein TRIGALACTOSYLDIACYLGLYCEROL 3, chloroplastic; ABC transporter I family member 13; ABC transporter ABCI.13; AtABCI13; Non-intrinsic ABC protein 11; AtNAP11 from Arabidopsis thaliana (Mouse-ear cress) (see 6 papers)
TC 3.A.1.27.2 / Q9AT00 Tdg3, component of The chloroplast lipid (trigalactosyl diacyl glycerol (TDG)) transporter, Tdg1,2,3 (Lu et al., 2007). Lipids such as mono- and digalactolipids are synthesized in the endoplasmic reticulum (ER) of plant cells and transferred to the thylakoid membranes of chloroplasts. Mutations in an outer chloroplastic envelope protein with 350 aas and 7 putative TMSs in the last 250 residues may catalyze translocation as part of a lipid transfer complex from Arabidopsis thaliana (Mouse-ear cress) (see 7 papers)
    31% identity, 73% coverage of query (111 bits)

8hplC / A0R2C0 Lpqy-sugabc in state 1 (see paper)
    32% identity, 72% coverage of query (111 bits)

8hprD Lpqy-sugabc in state 4
    31% identity, 84% coverage of query (111 bits)

8hprC Lpqy-sugabc in state 4
    31% identity, 84% coverage of query (111 bits)

Build an alignment

Build an alignment for WP_090275879.1 and 55 homologs with ≥ 30% identity

Select sequences

Add sequences from UniProt, PDB, RefSeq, or MicrobesOnline (separate identifiers with commas or spaces):

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Change minimum %identity:

Additional hits (identity < 30%)

SapD / b1291 putrescine ABC exporter ATP binding protein SapD (EC 7.6.2.16) from Escherichia coli K-12 substr. MG1655 (see 5 papers)
SapD / P0AAH4 putrescine ABC exporter ATP binding protein SapD (EC 7.6.2.16) from Escherichia coli (strain K12) (see 5 papers)
SAPD_ECOLI / P0AAH4 Putrescine export system ATP-binding protein SapD from Escherichia coli (strain K12) (see 2 papers)
    28% identity, 73% coverage of query (109 bits)

ABCA3_HUMAN / Q99758 Phospholipid-transporting ATPase ABCA3; ABC-C transporter; ATP-binding cassette sub-family A member 3; ATP-binding cassette transporter 3; ATP-binding cassette 3; Xenobiotic-transporting ATPase ABCA3; EC 7.6.2.1; EC 7.6.2.2 from Homo sapiens (Human) (see 18 papers)
TC 3.A.1.211.5 / Q99758 The surfactant-secreting porter, ABCA3 (exports lipids and proteins into lamellar bodies). Fatal surfactant deficiency (FSD) can result from mutations in ABCA3, causing abnormal intracellular localization (type I) or decreased ATP hydrolysis (type II). Other mutations cause pediatric interstitial lung disease (pILD) from Homo sapiens (Human) (see 7 papers)
ABCA3 / RF|NP_001080.2 ATP-binding cassette sub-family A member 3 from Homo sapiens (see paper)
    30% identity, 70% coverage of query (108 bits)

8wdbD Cryo-em structure of the atp-bound dppabcd complex
    37% identity, 71% coverage of query (107 bits)

8xfcD / I6Y482 Cryo-em structure of the atp-bound mtb dppabcd with the d445a mutation of dppa
    37% identity, 71% coverage of query (107 bits)

ABCB7_HUMAN / O75027 Iron-sulfur clusters transporter ABCB7, mitochondrial; ATP-binding cassette sub-family B member 7, mitochondrial; ATP-binding cassette transporter 7; ABC transporter 7 protein from Homo sapiens (Human) (see 8 papers)
TC 3.A.1.210.4 / O75027 ABC7 or ABCB7 iron transporter (X-linked sideroblastis anemia protein, XLSA/A (Fujiwara and Harigae 2013)) from Homo sapiens (Human) (see 9 papers)
    31% identity, 76% coverage of query (104 bits)

8jwfA / Q7K6A5 Cryo-em structure of plasmodium falciparum multidrug resistance protein 1 with h1 helix in complex with mfq (see paper)
    27% identity, 72% coverage of query (87.8 bits)

8jwiA Cryo-em structure of the outward-facing plasmodium falciparum multidrug resistance protein 1
    27% identity, 72% coverage of query (86.7 bits)

ABCA6_HUMAN / Q8N139 ATP-binding cassette sub-family A member 6; EC 7.6.2.- from Homo sapiens (Human) (see 3 papers)
TC 3.A.1.211.15 / Q8N139 ATP-binding cassette sub-family A member 6, ABCA6 of 1617 aas. This transporter may play a role in macrophage lipid homeostasis. It is up-regulated during monocyte differentiation into macrophages but down-regulated by cholesterol loading of macrophages from Homo sapiens
    21% identity, 75% coverage of query (64.7 bits)

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by Morgan Price, Arkin group
Lawrence Berkeley National Laboratory