| Literature DB >> 33095579 |
Wenhu Zhan1, Pradeep K Singh2, Yi Ban1, Xiaoping Qing3, Marie Dominique Ah Kioon3, Hao Fan1, Quanju Zhao1, Rong Wang4, George Sukenick4, Jane Salmon3, J David Warren2, Xiaojing Ma1, Franck J Barrat1,3, Carl F Nathan1, Gang Lin1.
Abstract
The immunoproteasome (i-20S) has emerged as a therapeutic target for autoimmune and inflammatory disorders and hematological malignancies. Inhibition of the chymotryptic β5i subunit of i-20S inhibits T cell activation, B cell proliferation, and dendritic cell differentiation in vitro and suppresses immune responses in animal models of autoimmune disorders and allograft rejection. However, cytotoxicity to immune cells has accompanied the use of covalently reactive β5i inhibitors, whose activity against the constitutive proteasome (c-20S) is cumulative with the time of exposure. Herein, we report a structure-activity relationship study of a class of noncovalent proteasome inhibitors with picomolar potencies and 1000-fold selectivity for i-20S over c-20S. Furthermore, these inhibitors are specific for β5i over the other five active subunits of i-20S and c-20S, providing useful tools to study the functions of β5i in immune responses. The potency of these compounds in inhibiting human T cell activation suggests that they may have therapeutic potential.Entities:
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Year: 2020 PMID: 33095579 PMCID: PMC8086754 DOI: 10.1021/acs.jmedchem.0c01520
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 8.039