4.8 Article

Comprehensivemolecular characterization of clear cell renal cell carcinoma

期刊

NATURE
卷 499, 期 7456, 页码 43-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/nature12222

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资金

  1. NCATS NIH HHS [UL1 TR000005] Funding Source: Medline
  2. NCI NIH HHS [U24 CA143840, U24 CA143843, T32 CA071341, U24 CA143835, P30 CA016672, U24 CA143866, R01 CA068490, K24 CA172355, U24 CA143867, U24 CA143883, T32 CA082088, U24 CA143882, U24 CA143848, U24 CA143799, P30 CA008748, U24 CA144025, U24 CA143858, U24 CA143845] Funding Source: Medline
  3. NHGRI NIH HHS [R01 HG005690, U54 HG003079, U54 HG003067, U54 HG003273] Funding Source: Medline
  4. Div Of Biological Infrastructure
  5. Direct For Biological Sciences [845783] Funding Source: National Science Foundation

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Genetic changes underlying clear cell renal cell carcinoma(ccRCC) include alterations in genes controlling cellular oxygen sensing (for example, VHL) and the maintenance of chromatin states (for example, PBRM1). We surveyed more than 400 tumours using different genomic platforms and identified 19 significantly mutated genes. The PI(3) K/AKT pathway was recurrently mutated, suggesting this pathway as a potential therapeutic target. Widespread DNA hypomethylation was associated with mutation of the H3K36 methyltransferase SETD2, and integrative analysis suggested that mutations involving the SWI/SNF chromatin remodelling complex (PBRM1, ARID1A, SMARCA4) could have far-reaching effects on other pathways. Aggressive cancers demonstrated evidence of a metabolic shift, involving downregulation of genes involved in the TCA cycle, decreased AMPK and PTEN protein levels, upregulation of the pentose phosphate pathway and the glutamine transporter genes, increased acetyl-CoA carboxylase protein, and altered promoter methylation of miR-21 (also known as MIR21) and GRB10. Remodelling cellular metabolism thus constitutes a recurrent pattern in ccRCC that correlates with tumour stage and severity and offers new views on the opportunities for disease treatment.

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