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Sökning: onr:"swepub:oai:DiVA.org:uu-420769" > Restoration of KMT2...

Restoration of KMT2C/MLL3 in human colorectal cancer cells reinforces genome-wide H3K4me1 profiles and influences cell growth and gene expression

Larsson, Chatarina, 1979- (författare)
Uppsala universitet,Experimentell och klinisk onkologi
Cordeddu, Lina (författare)
Karolinska Inst, NEO, Dept Biosci & Nutr, SE-14183 Huddinge, Sweden.
Siggens, Lee (författare)
Karolinska Inst, NEO, Dept Biosci & Nutr, SE-14183 Huddinge, Sweden.
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Djureinovic, Tatjana (författare)
Uppsala universitet,Experimentell och klinisk onkologi
Kundu, Snehangshu (författare)
Uppsala universitet,Experimentell och klinisk onkologi
He, Liqun (författare)
Uppsala universitet,Vaskulärbiologi
Ali, Muhammad Akhtar (författare)
Uppsala universitet,Experimentell och klinisk onkologi,Univ Punjab, Sch Biol Sci, Lahore, Pakistan.
Pristovsek, Nusa (författare)
Uppsala universitet,Institutionen för immunologi, genetik och patologi,Tech Univ Denmark, Novo Nordisk Fdn Biosustainabil, Bldg 220, DK-2800 Lyngby, Denmark.
Hartman, Karin (författare)
Uppsala universitet,Institutionen för immunologi, genetik och patologi
Ekwall, Karl (författare)
Karolinska Institutet
Sjöblom, Tobias (författare)
Uppsala universitet,Experimentell och klinisk onkologi
Pandzic, T (författare)
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 (creator_code:org_t)
2020-05-29
2020
Engelska.
Ingår i: Clinical Epigenetics. - : Springer Nature. - 1868-7083 .- 1868-7075. ; 12:1
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Background The histone 3 lysine 4 (H3K4) monomethylase KMT2C is mutated across several cancer types; however, the effects of mutations on epigenome organization, gene expression, and cell growth are not clear. A frequently recurring mutation in colorectal cancer (CRC) with microsatellite instability is a single nucleotide deletion within the exon 38 poly-A(9) repeat (c.8390delA) which results in frameshift preceding the functional carboxy-terminal SET domain. To study effects ofKMT2Cexpression in CRC cells, we restored one allele to wild typeKMT2Cin the two CRC cell lines RKO and HCT116, which both are homozygous c.8390delA mutant. Results Gene editing resulted in increasedKMT2Cexpression, increased H3K4me1 levels, altered gene expression profiles, and subtle negative effects on cell growth, where higher dependence and stronger effects ofKMT2Cexpression were observed in RKO compared to HCT116 cells. Surprisingly, we found that the two RKO and HCT116 CRC cell lines have distinct baseline H3K4me1 epigenomic profiles. In RKO cells, a flatter genome-wide H3K4me1 profile was associated with more increased H3K4me1 deposition at enhancers, reduced cell growth, and more differential gene expression relative to HCT116 cells when KMT2C was restored. Profiling of H3K4me1 did not indicate a highly specific regulation of gene expression as KMT2C-induced H3K4me1 deposition was found globally and not at a specific enhancer sub-set in the engineered cells. Although we observed variation in differentially regulated gene sets between cell lines and individual clones, differentially expressed genes in both cell lines included genes linked to known cancer signaling pathways, estrogen response, hypoxia response, and aspects of immune system regulation. Conclusions Here, KMT2C restoration reduced CRC cell growth and reinforced genome-wide H3K4me1 deposition at enhancers; however, the effects varied depending upon the H3K4me1 status of KMT2C deficient cells. Results indicate that KMT2C inactivation may promote colorectal cancer development through transcriptional dysregulation in several pathways with known cancer relevance.

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Cancer och onkologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Cancer and Oncology (hsv//eng)

Nyckelord

KMT2C
MLL3
Cancer

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