4.7 Article

Molecular Pathways: Understanding and Targeting Mutant Spliceosomal Proteins

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CLINICAL CANCER RESEARCH
卷 23, 期 2, 页码 336-341

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1078-0432.CCR-16-0131

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资金

  1. Aplastic Anemia and MDS Research Foundation
  2. Edward P. Evans Foundation
  3. Department of Defense Bone Marrow Failure Research Program [BM150092, W81XWH-16-1-0059]
  4. NIH/NHLBI [R01 HL128239]
  5. NIH [1K08CA160647-01]
  6. Josie Robertson Investigator Program
  7. Damon Runyon Clinical Investigator Award from the Starr Foundation [I8-A8-075]
  8. Leukemia and Lymphoma Society
  9. Pershing Square Sohn Cancer Research Alliance
  10. NATIONAL CANCER INSTITUTE [K08CA160647, P30CA008748] Funding Source: NIH RePORTER
  11. NATIONAL HEART, LUNG, AND BLOOD INSTITUTE [R01HL128239] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Splicing of precursor messenger RNA is a critical step in regulating gene expression, and major advances are being made in understanding the composition and structure of the enzymatic complex that performs splicing, which is termed the spliceosome. In parallel, there has been increased appreciation for diverse mechanisms by which alterations in splicing contribute to cancer pathogenesis. Key among these include change-offunction mutations in genes encoding spliceosomal proteins. Such mutations are among the most common genetic alterations in myeloid and lymphoid leukemias, making efforts to therapeutically target cells bearing these mutations critical. To this end, recent studies have clarified that pharmacologic modulation of splicing may be preferentially lethal for cells bearing spliceosomal mutations and may also have a role in the therapy of MYC-driven cancers. This has culminated in the initiation of a clinical trial of a novel oral spliceosome modulatory compound targeting the SF3B complex, and several novel alternative approaches to target splicing are in development as reviewed here. There is now, therefore, a great need to understand the mechanistic basis of altered spliceosomal function in cancers and to study the effects of spliceosomal modulatory compounds in preclinical settings and in well-designed clinical trials. (C) 2016 AACR.

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