| Title | Macrocyclic Peptides that Selectively Inhibit the Mycobacterium tuberculosis Proteasome. |
| Publication Type | Journal Article |
| Year of Publication | 2021 |
| Authors | Zhang H, Hsu H-C, Kahne SC, Hara R, Zhan W, Jiang X, Burns-Huang K, Ouellette T, Imaeda T, Okamoto R, Kawasaki M, Michino M, Wong T-T, Toita A, Yukawa T, Moraca F, Vendome J, Saha P, Sato K, Aso K, Ginn J, Meinke PT, Foley M, Nathan CF, K Darwin H, Li H, Lin G |
| Journal | J Med Chem |
| Volume | 64 |
| Issue | 9 |
| Pagination | 6262-6272 |
| Date Published | 2021 May 13 |
| ISSN | 1520-4804 |
| Keywords | Anti-Bacterial Agents, Drug Design, Humans, Mycobacterium tuberculosis, Peptides, Cyclic, Proteasome Endopeptidase Complex, Proteasome Inhibitors, Structure-Activity Relationship |
| Abstract | Treatment of tuberculosis (TB) currently takes at least 6 months. Latent Mycobacterium tuberculosis (Mtb) is phenotypically tolerant to most anti-TB drugs. A key hypothesis is that drugs that kill nonreplicating (NR) Mtb may shorten treatment when used in combination with conventional drugs. The Mtb proteasome (Mtb20S) could be such a target because its pharmacological inhibition kills NR Mtb and its genetic deletion renders Mtb unable to persist in mice. Here, we report a series of macrocyclic peptides that potently and selectively target the Mtb20S over human proteasomes, including macrocycle 6. The cocrystal structure of macrocycle 6 with Mtb20S revealed structural bases for the species selectivity. Inhibition of 20S within Mtb by 6 dose dependently led to the accumulation of Pup-tagged GFP that is degradable but resistant to depupylation and death of nonreplicating Mtb under nitrosative stress. These results suggest that compounds of this class have the potential to develop as anti-TB therapeutics. |
| DOI | 10.1021/acs.jmedchem.1c00296 |
| Alternate Journal | J Med Chem |
| PubMed ID | 33949190 |
| PubMed Central ID | PMC8194371 |
| Grant List | R01 AI070285 / AI / NIAID NIH HHS / United States R01 AI088075 / AI / NIAID NIH HHS / United States R21 AI144552 / AI / NIAID NIH HHS / United States T32 AI007180 / AI / NIAID NIH HHS / United States R01 AI143714 / AI / NIAID NIH HHS / United States |
Submitted by ljc4002 on August 21, 2025 - 2:20pm
