4 Results for "

ClpP1P2

" in MedChemExpress (MCE) Product Catalog:
Products (4)

4 Results for "ClpP1P2" in MCE Product Catalog:

  • Targets Recommended:
Cat. No.: HY-P4284
CAS No.: 35172-59-9
Target:  

Proteasome ClpP Bacterial

Research Areas:  

Infection

Z-GGF-CMK is an Antibacterial agent, an inhibitor of the ClpP1P2 serine protease complex (with an IC50 of 50 μM against intracellular ClpP1P2 protease activity in Mycobacterium bovis BCG), and a selective inhibitor of the mycobacterial Proteasome (with an IC50 of 50 μM against the proteasome in M. bovis BCG). Z-GGF-CMK inhibits the growth of mycobacteria. Z-GGF-CMK exhibits cytotoxic activity against liver cancer cells. Z-GGF-CMK can be used in the research of tuberculosis .
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Cat. No.: HY-187235
CAS No.: 3069900-75-7
Target:  

ClpP Bacterial

Research Areas:  

Infection

ClpP1P2-IN-1 is a protease inhibitor targeting ClpP1P2 of Mycobacterium tuberculosis, with a Ki value of 0.04 μM. ClpP1P2-IN-1 inhibits the growth of Mycobacterium tuberculosis and shows low cytotoxicity against mammalian kidney cells. ClpP1P2-IN-1 can be used in the research of tuberculosis .
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Cat. No.: HY-173617
CAS No.: 849616-57-5
Synonyms: SAM002706100
Target:  

Bacterial

Research Areas:  

Infection Inflammation/Immunology

GDI-5755 (SAM002706100), an antibacterial agent by inhibiting ClpP1P2, inhibits the growth of Mtb and M. bovis BCG, the model organism of mycobacteria. GDI-5755 can be used in the research for tuberculosis (TB) .
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Cat. No.: HY-153574
Synonyms: pArg-JQ1
Research Areas:  

Infection

BI01826025 (pArg-JQ1) is a BacPROTAC-type bifunctional degrader that induces the degradation of BRDTBD1-containing substrates by recruiting the ClpC1P1P2 protease system. BI01826025 binds to the BRDTBD1 substrate via its JQ1 moiety and to ClpC1 via its pArg moiety; it delivers the substrate to ClpC1, where the substrate undergoes ClpC1-mediated unfolding followed by proteolysis by ClpP1P2. BI01826025 can be used to study ClpC1P1P2-mediated targeted protein degradation and ClpC2-regulated bacterial protein homeostasis .
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