S100 Family: 2.40.50.100.6.1.1.1
Classification Lineage (2.40.50.100.6.1.1.1)
| CATH Code | Level Description | Links |
|---|---|---|
2
| Mainly Beta | |
2.40
| Beta Barrel | |
2.40.50
| OB fold (Dihydrolipoamide Acetyltransferase, E2P) | |
2.40.50.100
| Gene3D | |
2.40.50.100.6
| ||
2.40.50.100.6.1
| ||
2.40.50.100.6.1.1
| ||
2.40.50.100.6.1.1.1
|
Summary of Non-Redundant Representatives
![]() | ![]() | ![]() | ![]() | ![]() | ![]() | ![]() | ![]() | ![]() |
|---|---|---|---|---|---|---|---|---|
| - | - | - | - | - | - | - | - | 4 |
S100 Count Entries in S100 Family 2.40.50.100.6.1.1.1 (4)
| CATH Level | CATH code | Domain ID | Keywords | Thumbnail |
|---|---|---|---|---|
![]() |
2.40.50.100.6.1.1.1.1 | 1bdoA00 | Biotin carboxyl carrier protein of acetyl-CoA carboxylase, Escherichia coli K-12, Fatty acid biosynthesis, Pyruvate metabolism, fatty acid biosynthetic process, acetyl-CoA carboxylase biotin carboxyl carrier protein, Propanoate metabolism | |
![]() |
2.40.50.100.6.1.1.1.2 | 2bdoA00 | Propanoate metabolism, acetyl-CoA carboxylase biotin carboxyl carrier protein, fatty acid biosynthetic process, Pyruvate metabolism, Fatty acid biosynthesis, Escherichia coli K-12, Biotin carboxyl carrier protein of acetyl-CoA carboxylase | |
![]() |
2.40.50.100.6.1.1.1.3 | 3bdoA00 | acetyl-CoA carboxylase biotin carboxyl carrier protein, Propanoate metabolism, fatty acid biosynthetic process, Pyruvate metabolism, Fatty acid biosynthesis, Escherichia coli K-12, Biotin carboxyl carrier protein of acetyl-CoA carboxylase | |
![]() |
2.40.50.100.6.1.1.1.4 | 1a6xA00 | Propanoate metabolism, acetyl-CoA carboxylase biotin carboxyl carrier protein, Pyruvate metabolism, fatty acid biosynthetic process, Escherichia coli K-12, Fatty acid biosynthesis, Biotin carboxyl carrier protein of acetyl-CoA carboxylase |
The information on Functional Families (FunFams) is currently being updated and will be released by the end of March 2012. The pages will include the following features:
- Multiple alignments for each functional family
- Representative structure for each functional with known catalytic and interface residues highlighted, along with conserved residues predicted by scorecons
- Detailed functional information on diversity and conservation within Functional families
- Multi-domain architectures









