GapMind for catabolism of small carbon sources

 

Alignments for a candidate for livJ in Rhizobium johnstonii 3841

Align Leucine ABC transporter subunit substrate-binding protein LivK (characterized, see rationale)
to candidate WP_003542332.1 RL_RS19315 branched-chain amino acid ABC transporter substrate-binding protein

Query= uniprot:A0A160A0J6
         (375 letters)



>NCBI__GCF_000009265.1:WP_003542332.1
          Length = 373

 Score =  295 bits (754), Expect = 2e-84
 Identities = 158/359 (44%), Positives = 219/359 (61%), Gaps = 2/359 (0%)

Query: 9   SKLFAAMVLAGVASHSFAADTIKIGIAGPKTGPVAQYGDMQFSGSKMAIEQINAKGGVNG 68
           S L A  + A VA    A   + I +AGP TGP A +G     G++ A   INA GG+NG
Sbjct: 4   SLLSAVALTAMVAFSGNAWADVLIAVAGPLTGPNAAFGAQLQKGAEQAAADINAAGGING 63

Query: 69  KQLVAVEYDDACDPKQAVAVANKVVNDGIKFVVGHLCSSSTQPASDIYEDEGVVMITPAA 128
           +Q+     DD  DPKQ ++VANK   DG+KFV+GH  S  + PAS++Y + G++ ITPAA
Sbjct: 64  EQIKIELGDDVSDPKQGISVANKFAADGVKFVIGHFNSGVSIPASEVYAENGILEITPAA 123

Query: 129 TSPDITARGYKMIFRTIGLDSAQGPAAGNYIADHVKPKIVAVLHDKQQYGEGIASAVKKT 188
           T+P  T RG    FRT G D  QG  AG Y+ADH K   +AV+HDK  YG+G+A   KK 
Sbjct: 124 TNPTFTERGLWNTFRTCGRDDQQGAIAGKYLADHFKDAKIAVVHDKTPYGQGLADETKKA 183

Query: 189 LEDKGVKVAVFEGVNAGDKDFSSMIAKLKQANVDFVYYGGYHPELGLILRQSQEKGLKAK 248
           +   GV   ++EG+N GDKDFS++IAK+K+A V  +Y+GG H E GLI+RQ+ ++GLKA 
Sbjct: 184 MNAAGVTEVIYEGINVGDKDFSALIAKMKEAGVSIIYWGGLHTEAGLIIRQAADQGLKAT 243

Query: 249 FMGPEGVGNDSISQIAKESSEGLLVTLPKSFDQDPANIALADAFKAKKEDPSGPFVFPSY 308
            +  +G+ ++ ++ IA ++  G L T       +PAN  L + FKA   +P   +   SY
Sbjct: 244 LVSGDGIVSNELASIAGDAVAGTLNTFGPDPTANPANKELVEKFKAAGFNPEA-YTLYSY 302

Query: 309 SAVTVIADAIKAAKSEDAGKVAEAI-HAGTFKTPTGDLSFDKNGDLKDFKFVVYEWHFG 366
           +A+  IA A KAA S D   VA+A+   G F T  GD+SFD+ GD K   +++YEW  G
Sbjct: 303 AAMQTIAGAAKAAGSLDPEAVAKAMKEKGPFPTVLGDISFDEKGDPKIPGYIMYEWKKG 361


Lambda     K      H
   0.314    0.132    0.372 

Gapped
Lambda     K      H
   0.267   0.0410    0.140 


Matrix: BLOSUM62
Gap Penalties: Existence: 11, Extension: 1
Number of Sequences: 1
Number of Hits to DB: 466
Number of extensions: 24
Number of successful extensions: 2
Number of sequences better than 1.0e-02: 1
Number of HSP's gapped: 1
Number of HSP's successfully gapped: 1
Length of query: 375
Length of database: 373
Length adjustment: 30
Effective length of query: 345
Effective length of database: 343
Effective search space:   118335
Effective search space used:   118335
Neighboring words threshold: 11
Window for multiple hits: 40
X1: 16 ( 7.2 bits)
X2: 38 (14.6 bits)
X3: 64 (24.7 bits)
S1: 42 (22.0 bits)
S2: 50 (23.9 bits)

This GapMind analysis is from Apr 09 2024. The underlying query database was built on Sep 17 2021.

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About GapMind

Each pathway is defined by a set of rules based on individual steps or genes. Candidates for each step are identified by using ublast (a fast alternative to protein BLAST) against a database of manually-curated proteins (most of which are experimentally characterized) or by using HMMer with enzyme models (usually from TIGRFam). Ublast hits may be split across two different proteins.

A candidate for a step is "high confidence" if either:

where "other" refers to the best ublast hit to a sequence that is not annotated as performing this step (and is not "ignored").

Otherwise, a candidate is "medium confidence" if either:

Other blast hits with at least 50% coverage are "low confidence."

Steps with no high- or medium-confidence candidates may be considered "gaps." For the typical bacterium that can make all 20 amino acids, there are 1-2 gaps in amino acid biosynthesis pathways. For diverse bacteria and archaea that can utilize a carbon source, there is a complete high-confidence catabolic pathway (including a transporter) just 38% of the time, and there is a complete medium-confidence pathway 63% of the time. Gaps may be due to:

GapMind relies on the predicted proteins in the genome and does not search the six-frame translation. In most cases, you can search the six-frame translation by clicking on links to Curated BLAST for each step definition (in the per-step page).

For more information, see:

If you notice any errors or omissions in the step descriptions, or any questionable results, please let us know

by Morgan Price, Arkin group, Lawrence Berkeley National Laboratory