Multiple myeloma is a clinically and genetically heterogeneous disease. One half of patients have hyperdiploidy and the other half have one of five recurrent immunoglobulin gene translocations. In both cases these are felt to represent primary genetic events, with the consequence of dysregulation of the expression of a cyclin D gene. Subsequent tumor progression occurs with activating mutations of RAS, secondary translocations of MYC, and inactivating mutations of p53. Recently we have identified a promiscuous array of mutations that activate primarily the non-canonical NFkB pathway. The most common is inactivation of TRAF3 in -13% of MM patients that appears to identify patients with a low response to glucocorticoids, and a high response to proteasbme inhibitors. The tumor acquisition of so many mutations focused on this single pathway highlights its critical importance to the MM cell. We hypothesize that in the majority of patients the pathway is activated as a result of ligand-dependent interaction in the bone marrow microenvironment, and only a fraction (~20%) of patients acquire mutations causing constitutive activation. We propose to dissect out the mechanisms causing activation of the canonical and non-canonical NFkB pathway in MM patients. We hypothesize that both in the presence of ligand-dependent, as well as ligandindependent activation of this pathway, there will be a favorable therapeutic index to its inhibition. We propose to study the functional consequence of specific targeted inhibition using small molecule inhibitors in relevant pre-clinical models. Finally, we propose to introduce into clinical trials targeted NFkB pathway inhibitors showing promise in pre-clinical studies.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Specialized Center (P50)
Project #
5P50CA100707-09
Application #
8321871
Study Section
Special Emphasis Panel (ZCA1)
Project Start
Project End
Budget Start
2011-09-01
Budget End
2012-08-31
Support Year
9
Fiscal Year
2011
Total Cost
$272,300
Indirect Cost
Name
Dana-Farber Cancer Institute
Department
Type
DUNS #
076580745
City
Boston
State
MA
Country
United States
Zip Code
02215
Bolli, Niccolò; Maura, Francesco; Minvielle, Stephane et al. (2018) Genomic patterns of progression in smoldering multiple myeloma. Nat Commun 9:3363
Gullà, A; Hideshima, T; Bianchi, G et al. (2018) Protein arginine methyltransferase 5 has prognostic relevance and is a druggable target in multiple myeloma. Leukemia 32:996-1002
Mazzotti, Céline; Buisson, Laure; Maheo, Sabrina et al. (2018) Myeloma MRD by deep sequencing from circulating tumor DNA does not correlate with results obtained in the bone marrow. Blood Adv 2:2811-2813
Samur, Mehmet Kemal; Minvielle, Stephane; Gulla, Annamaria et al. (2018) Long intergenic non-coding RNAs have an independent impact on survival in multiple myeloma. Leukemia 32:2626-2635
Xu, Yan; Deng, Shuhui; Mao, Xuehan et al. (2018) Tolerance, Kinetics, and Depth of Response for Subcutaneous Versus Intravenous Administration of Bortezomib Combination in Chinese Patients With Newly Diagnosed Multiple Myeloma. Clin Lymphoma Myeloma Leuk 18:422-430
Michallet, M; Chapuis-Cellier, C; Dejoie, T et al. (2018) Heavy+light chain monitoring correlates with clinical outcome in multiple myeloma patients. Leukemia 32:376-382
Ray, A; Das, D S; Song, Y et al. (2018) Combination of a novel HDAC6 inhibitor ACY-241 and anti-PD-L1 antibody enhances anti-tumor immunity and cytotoxicity in multiple myeloma. Leukemia 32:843-846
Guang, Matthew Ho Zhi; McCann, Amanda; Bianchi, Giada et al. (2018) Overcoming multiple myeloma drug resistance in the era of cancer 'omics'. Leuk Lymphoma 59:542-561
Perrot, Aurore; Lauwers-Cances, Valerie; Corre, Jill et al. (2018) Minimal residual disease negativity using deep sequencing is a major prognostic factor in multiple myeloma. Blood 132:2456-2464
Tai, Yu-Tzu; Lin, Liang; Xing, Lijie et al. (2018) APRIL signaling via TACI mediates immunosuppression by T regulatory cells in multiple myeloma: therapeutic implications. Leukemia :

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