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Updated: Feb 16, 2026

Construction of Cyclic Cell-Penetrating Peptides for Enhanced Penetration of Biological Barriers
Published on: September 19, 2022
Cell-penetrating peptides derived from Clostridium difficile TcdB2 and a related large clostridial toxin
Jason L Larabee1, Garrett D Hauck2, Jimmy D Ballard2
1From the Department of Microbiology and Immunology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104 jason-larabee@ouhsc.edu.
Abstract:
Clostridium difficile TcdB (2366 amino acid residues) is an intracellular bacterial toxin that binds to cells and enters the cytosol where it glucosylates small GTPases. In the current study, we examined a putative cell entry region of TcdB (amino acid residues 1753-1851) for short sequences that function as cell-penetrating peptides (CPPs). To screen for TcdB-derived CPPs, a panel of synthetic peptides was tested for the ability to enhance transferrin (Tf) association with cells. Four candidate CPPs were discovered, and further study on one peptide (PepB2) pinpointed an asparagine residue necessary for CPP activity. PepB2 mediated the cell entry of a wide variety of molecules including dextran, streptavidin, microspheres, and lentivirus particles. Of note, this uptake was dramatically reduced in the presence of the Na+/H+ exchange blocker and micropinocytosis inhibitor amiloride, suggesting that PepB2 invokes macropinocytosis. Moreover, we found that PepB2 had more efficient cell-penetrating activity than several other well-known CPPs (TAT, penetratin, Pep-1, and TP10). Finally, Tf assay-based screening of peptides derived from two other large clostridial toxins, TcdA and TcsL, uncovered two new TcdA-derived CPPs. In conclusion, we have identified six CPPs from large clostridial toxins and have demonstrated the ability of PepB2 to promote cell association and entry of several molecules through a putative fluid-phase macropinocytotic mechanism.
Insights
Researchers discovered six novel cell-penetrating peptides (CPPs) from large clostridial toxins. One peptide, PepB2, efficiently delivers various molecules into cells via macropinocytosis.
Area of Science:
- Microbiology
- Cell Biology
- Biochemistry
Background:
- Clostridium difficile toxin B (TcdB) is an intracellular toxin.
- Toxins bind cells and enter the cytosol to modify host proteins.
Purpose of the Study:
- To identify cell-penetrating peptides (CPPs) within TcdB.
- To investigate the mechanism of CPP-mediated cellular uptake.
Main Methods:
- Screening synthetic peptides from TcdB for cell-penetrating activity using transferrin association assays.
- Characterizing the uptake mechanism of identified CPPs, including PepB2.
- Comparing PepB2's efficacy against known CPPs.
Main Results:
- Identified four TcdB-derived CPP candidates, with PepB2 showing significant activity.
- PepB2 facilitated the cellular entry of diverse molecules (dextran, streptavidin, microspheres, lentivirus).
- PepB2-mediated uptake was inhibited by amiloride, suggesting macropinocytosis, and PepB2 outperformed other CPPs.
Conclusions:
- Six CPPs were identified from large clostridial toxins (TcdB, TcdA, TcsL).
- PepB2 effectively promotes cell association and entry of various molecules.
- PepB2 utilizes a macropinocytosis-dependent pathway for cellular delivery.
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