GapMind for catabolism of small carbon sources

 

Aligments for a candidate for aglK' in Klebsiella michiganensis M5al

Align Maltose/maltodextrin import ATP-binding protein; EC 3.6.3.19 (characterized, see rationale)
to candidate BWI76_RS03270 BWI76_RS03270 sugar ABC transporter ATP-binding protein CymD

Query= uniprot:A8LLL2
         (373 letters)



>FitnessBrowser__Koxy:BWI76_RS03270
          Length = 376

 Score =  300 bits (768), Expect = 4e-86
 Identities = 176/363 (48%), Positives = 224/363 (61%), Gaps = 9/363 (2%)

Query: 1   MADLKLTGVEKAYGD-VKVLSNINLDIQQGELIVFVGPSGCGKSTLLRMIAGLEKITGGT 59
           MA + L  +EK Y +  K +  I+L+I  GE +VFVGPSGC KST LRMIAGLE I+GG 
Sbjct: 1   MATVSLRKIEKRYENGFKAVHGIDLEIHDGEFMVFVGPSGCAKSTTLRMIAGLEDISGGE 60

Query: 60  LEIDGTVVNDVPPAQRGIAMVFQSYALYPHMTVRENMSFALKIAKKSQAEIDAAVEAAAE 119
           + I    VND+PP  RGIAMVFQ+YALYPH TV +NM+F LK+ K+ + EI   VE AAE
Sbjct: 61  IYIGNRKVNDLPPKDRGIAMVFQNYALYPHKTVFDNMAFGLKMQKRPKDEIKRRVEDAAE 120

Query: 120 KLQLGQYLDRLPKALSGGQRQRVAIGRSIVRDPKVYLFDEPLSNLDAALRVATRLEIAQL 179
           KL++ + L R PK +SGGQRQRVA+GR+IVR P V+LFDEPLSNLDA LRV+ R++IAQL
Sbjct: 121 KLEITELLYRKPKEMSGGQRQRVAVGRAIVRKPDVFLFDEPLSNLDAKLRVSMRMKIAQL 180

Query: 180 KEAMPE----STMVYVTHDQVEAMTLATRIVVLAGGGIAQVGSPLELYEKPENEFVAQFI 235
             ++ E    +TM+YVTHDQ EA+TL  RI VL  G I QV +P +LY  P N+FVA FI
Sbjct: 181 HRSLKEEGHPATMIYVTHDQTEALTLGDRICVLNHGNIMQVDTPTDLYNYPNNKFVASFI 240

Query: 236 GSPKMNLLPGKIIGTGAQTTVEMTDGGRAVSDYPSDDSLMG---AAVNVGVRPEDMVEAA 292
           GSP +NL+   I     +  VE+  G   +  +     L G     V  G+RPE +  A+
Sbjct: 241 GSPSINLIDTAIRKNNERLYVEIAPGVEILIPHSKQVLLEGYINKPVCFGIRPEHISLAS 300

Query: 293 PGGDY-VFEGKVAITEALGEVTLLYFEAPSGEDPTIGKLQGIHKDLKGQVTRLTAEPAKV 351
              D   FEG + + E +G    LYF     E       Q I+    G+  R     A  
Sbjct: 301 DDDDLNTFEGVLTVVENMGSEKFLYFIVGGKELIARVDTQDINPFHIGKTLRFNLNTAFC 360

Query: 352 HVF 354
           HVF
Sbjct: 361 HVF 363


Lambda     K      H
   0.316    0.135    0.379 

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: 396
Number of extensions: 16
Number of successful extensions: 3
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: 373
Length of database: 376
Length adjustment: 30
Effective length of query: 343
Effective length of database: 346
Effective search space:   118678
Effective search space used:   118678
Neighboring words threshold: 11
Window for multiple hits: 40
X1: 16 ( 7.3 bits)
X2: 38 (14.6 bits)
X3: 64 (24.7 bits)
S1: 41 (21.6 bits)
S2: 50 (23.9 bits)

This GapMind analysis is from Sep 17 2021. 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 the paper from 2019 on GapMind for amino acid biosynthesis, the paper from 2022 on GapMind for carbon sources, or view the source code.

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