[R01] Elucidating novel epigenetic etiology of risk disparities in multiple myeloma
Ente: National Institute on Minority Health and Health Disparities
Scadenza: 2030-01-31
Importo max: 825.769 EUR
Paese: US
Descrizione
Multiple myeloma (MM), the second most common hematologic malignancy in the United States, is an
incurable plasma cell malignancy with standardized incidence rates that are typically 2- to 3-fold higher among
African Americans (AA) compared to European Americans (EA). Reasons for this apparent difference
remain largely unclear. Genetic susceptibility and obesity are important risk factors for MM, but they do not fully
explain the excess risk of MM in AA. Epigenetic modifications, particularly cytosine modifications, play a critical
role in the development and progression of MM. However, unlike solid tumors (e.g., breast, prostate,
colon, etc.) where distinct epigenetic changes in various populations have been shown to account for the
differences in tumor initiation and progression, the epigenetic contributions to the excess risk of MM in
AA are not well characterized. Differences in epigenetic modifications are an intrinsic feature between
human populations and associated with complex traits and diseases. The majority of previous
epigenetic studies have used technologies that cannot distinguish 5-hydroxymethylcytosines (5hmC), a
biochemically stable epigenetic mark showed distinct genome-wide distributions and regulatory roles from
the most-studied modified cytosines, 5-methylcytosines (5mC). In addition, epigenetic epidemiology
studies have predominantly used DNA from peripheral blood lymphocytes as surrogate specimens
because obtaining CD138+ tumor cells from the bone marrow aspirates in healthy individuals is not
feasible. Therefore, we propose to elucidate the influence of novel DNA modifications, specifically the
5hmC in circulating cell-free DNA (cfDNA) on population differences in MM risk. Circulating cfDNA fragments
are released into the bloodstream by circulating dead or proliferating cancerous cells. Thus, cfDNA
produced by tumor cells hiding in the bone marrow, bone marrow microenvironment, or
extramedullary disease can be detected in plasma. We have demonstrated the relevance of cfDNA-derived
5hmC in MM and other hematological malignancies, including that specific 5hmC modifications in
cfDNA were associated with overall survival of MM; distinct 5hmC signatures reflected molecular
differences between subtypes of lymphoma; and population-specific pathways involving 5hmC were identified
between MM and its precursors. Our central hypotheses are that specific 5hmC signatures
associated with MM in cfDNA reflect primary tumor cells and microenvironment, and specific 5hmC
modifications contribute to the excess risk in AA. We will identify genome-wide 5hmC signatures for MM in
cfDNA (Aim 1) and investigate MM-associated 5hmC in cfDNA-paired bone marrow tumor cells and
microenvironment (Aim 2). We will elucidate population-specific 5hmC pathways between EA and AA patients
(Aim 3). This project is significant because it offers a timely and comprehensive strategy to identify novel
epigenetic contributors to MM and its population variations that w
Istituzione: UNIVERSITY OF CHICAGO
PI: BRIAN C-H CHIU, Wei Zhang
Progetto: 1R01MD021741-01A1
Settori: National Institute on Minority Health and Health Disparities
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