MYP_017766
Lactocillin
Antimicrobial
Standard
13 amino acids
C42H73N13O19S7
Standard
SCTTCTCCCSCCA
1288.56 Da
5.23
-0.61
-0.92
-0.0469
1.20
0.09
0.16
109.54
7.69
0.0000
0.00
375.00
The radar chart summarizes major physicochemical dimensions for quick comparison, while exact numerical values remain listed on the left.
Amino Acid Composition
513.67
-11.13
26.0
26.0
37.0
81.0
0.0
12.0
3D PDB MODEL
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2D CHEMICAL STRUCTURE
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RECORD: Rec_0130571
VERIFIED: YES
Provenance & Taxonomy
Synthetic construct [Synthetic]
32630
Structure & Mods
linear peptide [Linear]
canonical L-amino-acid peptide [L]
APD analysis reveals this sequence is most similar (71.4%) to Micrococcin P1. Extensive post-translational modifications, involving both backbone and sidechain modifications, are involved to generate the final peptide form. See the ref for the structure. Active against Gram+ pathogens S. aureus (MIC 42 nM), E. faecalis (MIC 425 nM), C. aurimucosum (MIC 42 nM), G. vaginalis (MIC 212 nM), oral S. sobrinus (MIC 85 nM), S. mutans (MIC 425 nM), but not commensal vaginal bacteria
Bio-Activity Profile
Antimicrobial
pathogens Staphylococcus aureus
0.042 μM
MIC
RECORD: Rec_0202391
VERIFIED: YES
Provenance & Taxonomy
Synthetic construct [Synthetic]
32630
Structure & Mods
linear peptide [Linear]
canonical L-amino-acid peptide [L]
APD analysis reveals this sequence is most similar (71.4%) to Micrococcin P1. Extensive post-translational modifications, involving both backbone and sidechain modifications, are involved to generate the final peptide form. See the ref for the structure. Active against Gram+ pathogens S. aureus (MIC 42 nM), E. faecalis (MIC 425 nM), C. aurimucosum (MIC 42 nM), G. vaginalis (MIC 212 nM), oral S. sobrinus (MIC 85 nM), S. mutans (MIC 425 nM), but not commensal vaginal bacteria
Bio-Activity Profile
Antimicrobial
Enterococcus faecalis
0.425 μM
MIC
RECORD: Rec_0204957
VERIFIED: YES
Provenance & Taxonomy
Synthetic construct [Synthetic]
32630
Structure & Mods
linear peptide [Linear]
canonical L-amino-acid peptide [L]
APD analysis reveals this sequence is most similar (71.4%) to Micrococcin P1. Extensive post-translational modifications, involving both backbone and sidechain modifications, are involved to generate the final peptide form. See the ref for the structure. Active against Gram+ pathogens S. aureus (MIC 42 nM), E. faecalis (MIC 425 nM), C. aurimucosum (MIC 42 nM), G. vaginalis (MIC 212 nM), oral S. sobrinus (MIC 85 nM), S. mutans (MIC 425 nM), but not commensal vaginal bacteria
Bio-Activity Profile
Antimicrobial
G. vaginalis
0.212 μM
MIC
RECORD: Rec_0208133
VERIFIED: YES
Provenance & Taxonomy
Synthetic construct [Synthetic]
32630
Structure & Mods
linear peptide [Linear]
canonical L-amino-acid peptide [L]
APD analysis reveals this sequence is most similar (71.4%) to Micrococcin P1. Extensive post-translational modifications, involving both backbone and sidechain modifications, are involved to generate the final peptide form. See the ref for the structure. Active against Gram+ pathogens S. aureus (MIC 42 nM), E. faecalis (MIC 425 nM), C. aurimucosum (MIC 42 nM), G. vaginalis (MIC 212 nM), oral S. sobrinus (MIC 85 nM), S. mutans (MIC 425 nM), but not commensal vaginal bacteria
Bio-Activity Profile
Antimicrobial
S. mutans
0.425 μM
MIC
RECORD: Rec_0340999
VERIFIED: YES
Provenance & Taxonomy
Synthetic construct [Synthetic]
32630
Structure & Mods
linear peptide [Linear]
canonical L-amino-acid peptide [L]
APD analysis reveals this sequence is most similar (71.4%) to Micrococcin P1. Extensive post-translational modifications, involving both backbone and sidechain modifications, are involved to generate the final peptide form. See the ref for the structure. Active against Gram+ pathogens S. aureus (MIC 42 nM), E. faecalis (MIC 425 nM), C. aurimucosum (MIC 42 nM), G. vaginalis (MIC 212 nM), oral S. sobrinus (MIC 85 nM), S. mutans (MIC 425 nM), but not commensal vaginal bacteria
Bio-Activity Profile
Antimicrobial
C. aurimucosum
0.042 μM
MIC
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