GapMind for catabolism of small carbon sources

 

sucrose catabolism in Devosia chinhatensis IPL18

Best path

ams, frcA, frcB, frcC, scrK

Rules

Overview: Sucrose utilization in GapMind is based on MetaCyc pathways sucrose degradation I via sucrose 6-phosphate hydrolase (link), pathway II via sucrose synthase (link), pathway III via invertase (link), and pathway IV via sucrose phosphorylase (link). Pathway V is similar to pathway III and is not reported in prokaryotes, so it is not included. There is no pathway VI. Pathway VII (via sucrose 3-dehydrogenase, link) is too poorly understood to include in GapMind.

101 steps (44 with candidates)

Or see definitions of steps

Step Description Best candidate 2nd candidate
ams sucrose hydrolase (invertase) VE26_RS00890
frcA fructose ABC transporter, ATPase component FrcA VE26_RS16460 VE26_RS02795
frcB fructose ABC transporter, substrate-binding component FrcB VE26_RS16450
frcC fructose ABC transporter, permease component FrcC VE26_RS16455 VE26_RS02880
scrK fructokinase VE26_RS12435 VE26_RS14410
Alternative steps:
1pfk 1-phosphofructokinase
aglE sucrose ABC transporter, substrate-binding component AglK
aglE' glucose ABC transporter, substrate-binding component (AglE)
aglF sucrose ABC transporter, permease component 1 (AglF) VE26_RS02385
aglF' glucose ABC transporter, permease component 1 (AglF)
aglG sucrose ABC transporter, permease component 2 (AglG) VE26_RS05230 VE26_RS02390
aglG' glucose ABC transporter, permease component 2 (AglG) VE26_RS05230 VE26_RS15220
aglK sucrose ABC transporter, ATPase component AglK VE26_RS02625 VE26_RS02400
aglK' glucose ABC transporter, ATPase component (AglK) VE26_RS02625 VE26_RS02630
araS fructose ABC transporter, substrate-binding component AraS
araT fructose ABC transporter, permease component 2 (AraT)
araU fructose ABC transporter, permease component 1 (AraU) VE26_RS02390
araV fructose ABC transporter, ATPase component AraV VE26_RS10905 VE26_RS03675
bglF glucose PTS, enzyme II (BCA components, BglF)
BT1758 fructose transporter
crr glucose PTS, enzyme IIA
cscB sucrose:H+ symporter CscB
eda 2-keto-3-deoxygluconate 6-phosphate aldolase VE26_RS12510 VE26_RS06640
edd phosphogluconate dehydratase VE26_RS01285 VE26_RS12715
fba fructose 1,6-bisphosphate aldolase VE26_RS11575
ffz fructose facilitator (uniporter)
frt1 fructose:H+ symporter Frt1
fruA fructose-specific PTS system (fructose 1-phosphate forming), EII-B'BC components
fruB fructose-specific PTS system (fructose 1-phosphate forming), Hpr and EII-A components
fruD fructose-specific PTS system (fructose 1-phosphate forming), EII-A component VE26_RS14660
fruE fructose ABC transporter, substrate-binding component FruE VE26_RS11320
fruF fructose ABC transporter, permease component 1 (FruF) VE26_RS11310 VE26_RS16455
fruG fructose ABC transporter, permease component 2 (FruG) VE26_RS11305
fruI fructose-specific PTS system (fructose 1-phosphate forming), EI, Hpr, and EII-A components VE26_RS12680
fruII-A fructose-specific PTS system (fructose 1-phosphate forming), EII-A component VE26_RS14660
fruII-ABC fructose-specific PTS system (fructose 1-phosphate forming), EII-ABC components
fruII-B fructose-specific PTS system (fructose 1-phosphate forming), EII-B component
fruII-C fructose-specific PTS system (fructose 1-phosphate forming), EII-C component
fruK fructose ABC transporter, ATPase component FruK VE26_RS11315 VE26_RS02875
fruP fructose porter FruP
gadh1 gluconate 2-dehydrogenase flavoprotein subunit
gadh2 gluconate 2-dehydrogenase cytochrome c subunit VE26_RS12420
gadh3 gluconate 2-dehydrogenase subunit 3
galU glucose 1-phosphate uridylyltransferase VE26_RS04525 VE26_RS14535
gdh quinoprotein glucose dehydrogenase VE26_RS00440 VE26_RS10210
ght6 high-affinity fructose transporter ght6
glcP fructose:H+ symporter GlcP
glcS glucose ABC transporter, substrate-binding component (GlcS)
glcT glucose ABC transporter, permease component 1 (GlcT)
glcU glucose ABC transporter, permease component 2 (GlcU) VE26_RS10875
glcU' Glucose uptake protein GlcU
glcV glucose ABC transporter, ATPase component (GclV) VE26_RS15810 VE26_RS05235
glk glucokinase VE26_RS16265
gnl gluconolactonase VE26_RS00405
gtsA glucose ABC transporter, substrate-binding component (GtsA) VE26_RS05220
gtsB glucose ABC transporter, permease component 1 (GtsB) VE26_RS05225 VE26_RS15215
gtsC glucose ABC transporter, permease component 2 (GtsC) VE26_RS05230 VE26_RS02045
gtsD glucose ABC transporter, ATPase component (GtsD) VE26_RS04745 VE26_RS02035
kguD 2-keto-6-phosphogluconate reductase VE26_RS00895 VE26_RS15190
kguK 2-ketogluconokinase VE26_RS04470 VE26_RS10065
kguT 2-ketogluconate transporter
levD fructose PTS system (fructose 6-phosphate forming), EII-A component
levDE fructose PTS system (fructose 6-phosphate forming), EII-AB component
levE fructose PTS system (fructose 6-phosphate forming), EII-B component
levF fructose PTS system (fructose 6-phosphate forming), EII-C component
levG fructose PTS system (fructose 6-phosphate forming), EII-D component
manX glucose PTS, enzyme EIIAB
manY glucose PTS, enzyme EIIC
manZ glucose PTS, enzyme EIID
MFS-glucose glucose transporter, MFS superfamily
mglA glucose ABC transporter, ATP-binding component (MglA) VE26_RS10935 VE26_RS02795
mglB glucose ABC transporter, substrate-binding component VE26_RS04595 VE26_RS10940
mglC glucose ABC transporter, permease component (MglC) VE26_RS10930 VE26_RS04600
PAST-A proton-associated sugar transporter A
pgmA alpha-phosphoglucomutase VE26_RS09715 VE26_RS11940
ptsG glucose PTS, enzyme IICB
ptsG-crr glucose PTS, enzyme II (CBA components, PtsG)
ptsS sucrose phosphotransferase enzyme EII-BCA
sacP sucrose phosphotransferase enzyme EII-BC
scrB sucrose-6-phosphate hydrolase
scrP sucrose phosphorylase
scrT sucrose permease ScrT
SemiSWEET Sugar transporter SemiSWEET
Slc2a5 fructose:H+ symporter
SLC45A2 sucrose transporter
SLC45A3 sucrose:H+ symporter
SLC45A4 sucrose:H+ symporter
SSS-glucose Sodium/glucose cotransporter
STP6 sugar transport protein 6
SUS sucrose synthase
sut sucrose:proton symporter SUT/SUC
sut1 alpha-glucoside permease Sut1
SWEET1 bidirectional sugar transporter SWEET1
THT2A fructose THT2A
thuE sucrose ABC transporter, substrate-binding component ThuE VE26_RS10880
thuF sucrose ABC transporter, permease component 1 (ThuF) VE26_RS10875 VE26_RS02050
thuG sucrose ABC transporter, permease component 2 (ThuG) VE26_RS10870 VE26_RS02045
thuK sucrose ABC transporter, ATPase component ThuK VE26_RS10865 VE26_RS02400
TMT1 heteromeric sucrose:H+ symporter, TMT1 component
TMT2 heteromeric sucrose:H+ symporter, TMT2 component
tpi triose-phosphate isomerase VE26_RS06585 VE26_RS11570

Confidence: high confidence medium confidence low confidence
transporter – transporters and PTS systems are shaded because predicting their specificity is particularly challenging.

This GapMind analysis is from Sep 24 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:

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