Peptide record

TPDB21286

Antibacterial Toxicity standard
13 amino acids
Basic Information
3D PDB MODEL
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TPDB21286
Antibacterial Toxicity
Anti-infective peptides Toxicity and safety peptides
Peptipedia
standard
No
A 13-aa standard natural multi-activity (Antibacterial and Toxicity) peptide sequence curated from Peptipedia, with an available 3D structural model.
Sequence
IILLLLKKFWKKL
Physicochemical Analysis
C86H146N18O14
ARNDCEQGHMPSTYV
L
1656.22
11.00
4
0
9
+4
-2.44
1.100
210.00
Mammalian: 20 hour Yeast: 30 min E.coli: >10 hour
5500
332.08
0
Residue Composition
number
0
A
0
R
0
N
0
D
0
C
0
E
0
Q
0
G
0
H
2
I
5
L
4
K
0
M
1
F
0
P
0
S
0
T
1
W
0
Y
0
V
Amino Acid Distribution
A: 0 R: 0 N: 0 D: 0 C: 0 E: 0 Q: 0 G: 0 H: 0 I: 2 L: 5 K: 4 M: 0 F: 1 P: 0 S: 0 T: 0 W: 1 Y: 0 V: 0
Chemical Descriptors
13
C86H146N18O14
1656.22
11.00
+4
-2.44
1.100
Evidence Records 11 records
Evidence 1 Activity

Activity

MIC
Antibacterial
3.13 µM

Target

Escherichia coli

Source & Reference

NA

Other

active against E. coli (MIC 3.13 uM), P. aeruginosa (MIC 6.25 uM), E. aerogenes (MIC 3.13 uM), E. cloacae (MIC 6.25 uM), K. pn
Evidence 2 Activity

Activity

MIC
Antibacterial
6.25 µM

Target

Pseudomonas aeruginosa

Source & Reference

NA

Other

active against E. coli (MIC 3.13 uM), P. aeruginosa (MIC 6.25 uM), E. aerogenes (MIC 3.13 uM), E. cloacae (MIC 6.25 uM), K. pneumoniae (MIC 3.13 uM), S. au
Evidence 3 Activity

Activity

MIC
Antibacterial
3.13 µM

Target

Enterobacter aerogenes

Source & Reference

NA

Other

active against E. coli (MIC 3.13 uM), P. aeruginosa (MIC 6.25 uM), E. aerogenes (MIC 3.13 uM), E. cloacae (MIC 6.25 uM), K. pneumoniae (MIC 3.13 uM), S. aureus (MIC 3.13 uM), B. cereu
Evidence 4 Activity

Activity

MIC
Antibacterial
6.25 µM

Target

Enterobacter cloacae

Source & Reference

NA

Other

e against E. coli (MIC 3.13 uM), P. aeruginosa (MIC 6.25 uM), E. aerogenes (MIC 3.13 uM), E. cloacae (MIC 6.25 uM), K. pneumoniae (MIC 3.13 uM), S. aureus (MIC 3.13 uM), B. cereus (MIC 6.25 uM), S. lactis
Evidence 5 Activity

Activity

MIC
Antibacterial
3.13 µM

Target

Klebsiella pneumoniae

Source & Reference

NA

Other

3 uM), P. aeruginosa (MIC 6.25 uM), E. aerogenes (MIC 3.13 uM), E. cloacae (MIC 6.25 uM), K. pneumoniae (MIC 3.13 uM), S. aureus (MIC 3.13 uM), B. cereus (MIC 6.25 uM), S. lactis (MIC 0.78 uM), E. faecalis (
Evidence 6 Activity

Activity

MIC
Antibacterial
3.13 µM

Target

Staphylococcus aureus

Source & Reference

NA

Other

5 uM), E. aerogenes (MIC 3.13 uM), E. cloacae (MIC 6.25 uM), K. pneumoniae (MIC 3.13 uM), S. aureus (MIC 3.13 uM), B. cereus (MIC 6.25 uM), S. lactis (MIC 0.78 uM), E. faecalis (MIC 1.56 uM), E. faecium
Evidence 7 Activity

Activity

MIC
Antibacterial
6.25 µM

Target

B. cereus

Source & Reference

NA

Other

3.13 uM), E. cloacae (MIC 6.25 uM), K. pneumoniae (MIC 3.13 uM), S. aureus (MIC 3.13 uM), B. cereus (MIC 6.25 uM), S. lactis (MIC 0.78 uM), E. faecalis (MIC 1.56 uM), E. faecium (MIC 3.13 uM).
Evidence 8 Activity

Activity

MIC
Antibacterial
0.78 µM

Target

S. lactis

Source & Reference

NA

Other

6.25 uM), K. pneumoniae (MIC 3.13 uM), S. aureus (MIC 3.13 uM), B. cereus (MIC 6.25 uM), S. lactis (MIC 0.78 uM), E. faecalis (MIC 1.56 uM), E. faecium (MIC 3.13 uM).
Evidence 9 Activity

Activity

MIC
Antibacterial
1.56 µM

Target

Enterococcus faecalis

Source & Reference

NA

Other

(MIC 3.13 uM), S. aureus (MIC 3.13 uM), B. cereus (MIC 6.25 uM), S. lactis (MIC 0.78 uM), E. faecalis (MIC 1.56 uM), E. faecium (MIC 3.13 uM).
Evidence 10 Activity

Activity

MIC
Antibacterial
3.13 µM

Target

E. faecium

Source & Reference

NA

Other

IC 3.13 uM), B. cereus (MIC 6.25 uM), S. lactis (MIC 0.78 uM), E. faecalis (MIC 1.56 uM), E. faecium (MIC 3.13 uM).
Evidence 11 Activity

Activity

50% Hemolysis
Toxicity
12.5 µM
Hemolytic Cytotoxic
50% Hemolysis | 12.5 | µM | target cell: Human erythrocytes

Target

Human erythrocytes

Source & Reference

NA
DBAASP
Membrane mechanism of temporin-1CEc, an antimicrobial peptide isolated from the skin secretions of Rana chensinensis, and its systemic analogs. | Bioorg Chem | 2022