| Literature DB >> 34071205 |
Metis Hasipek1, Dale Grabowski1, Yihong Guan1, Raghunandan Reddy Alugubelli2, Anand D Tiwari1, Xiaorong Gu1, Gabriel A DeAvila2, Ariosto S Silva3, Mark B Meads3, Yvonne Parker1, Daniel J Lindner1, Yogen Saunthararajah1,4,5, Kenneth H Shain2, Jaroslaw P Maciejewski1,4,5, Frederic J Reu2, James G Phillips1, Babal K Jha1,4,5.
Abstract
Multiple myeloma is a genetically complex hematologic neoplasia in which malignant plasma cells constantly operate at the maximum limit of their unfolded protein response (UPR) due to a high secretory burden of immunoglobulins and cytokines. The endoplasmic reticulum (ER) resident protein disulfide isomerase, PDIA1 is indispensable for maintaining structural integrity of cysteine-rich antibodies and cytokines that require accurate intramolecular disulfide bond arrangement. PDIA1 expression analysis from RNA-seq of multiple myeloma patients demonstrated an inverse relationship with survival in relapsed or refractory disease, supporting its critical role in myeloma persistence. Using a structure-guided medicinal chemistry approach, we developed a potent, orally bioavailable small molecule PDIA1 inhibitor CCF642-34. The inhibition of PDIA1 overwhelms the UPR in myeloma cells, resulting in their apoptotic cell death at doses that do not affect the normal CD34+ hematopoietic stem and progenitor cells. Bortezomib resistance leads to increased PDIA1 expression and thus CCF642-34 sensitivity, suggesting that proteasome inhibitor resistance leads to PDIA1 dependence for proteostasis and survival. CCF642-34 induces acute unresolvable UPR in myeloma cells, and oral treatment increased survival of mice in the syngeneic 5TGM1 model of myeloma. Results support development of CCF642-34 to selectively target the plasma cell program and overcome the treatment-refractory state in myeloma.Entities:
Keywords: ER stress; ERMM; IRMM; UPR; protein disulfide isomerase PDIA1
Year: 2021 PMID: 34071205 DOI: 10.3390/cancers13112649
Source DB: PubMed Journal: Cancers (Basel) ISSN: 2072-6694 Impact factor: 6.639