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  4. Ski Is Required for Tri-Methylation of H3K9 in Major Satellite and for Repression of Pericentromeric Genes: Mmp3, Mmp10 and Mmp13, in Mouse Fibroblasts
Details

Ski Is Required for Tri-Methylation of H3K9 in Major Satellite and for Repression of Pericentromeric Genes: Mmp3, Mmp10 and Mmp13, in Mouse Fibroblasts

Journal
Journal of Molecular Biology
ISSN
0022-2836
Date Issued
2020
Author(s)
Claudio Cappelli
Hugo Sepulveda
Solange Rivas  
Víctor Pola
Ulises Urzúa
Gerardo Donoso
Eduardo Sagredo
David Carrero
Emmanuel Casanova-Ortiz
Alfredo Sagredo
Marisel González
Marcia Manterola
Gino Nardocci
ARMISEN YAÑEZ, RICARDO AMADO  
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Martin Montecino
Katherine Marcelain
Type
Resource Types::text::journal::journal article
Scopus ID
2-s2.0-85082668651
WoS ID
WOS:000532829100009
DOI
10.1016/j.jmb.2020.03.013
URL
https://investigadores.udd.cl/handle/123456789/4985
URL Institutional Repository
http://hdl.handle.net/11447/3718
Cite this document
Cappelli, C., Sepulveda, H., Rivas, S., Pola, V., Urzúa, U., Donoso, G., Sagredo, E., Carrero, D., Casanova-Ortiz, E., Sagredo, A., González, M., Manterola, M., Nardocci, G., Armisén, R., Montecino, M., & Marcelain, K. (2020). Ski is required for tri-methylation of h3k9 in major satellite and for repression of pericentromeric genes: Mmp3, mmp10 and mmp13, in mouse fibroblasts. Journal of Molecular Biology, 432(10), 3222-3238. https://doi.org/10.1016/j.jmb.2020.03.013
Subjects
h3k9me3

; 

masat

; 

mitotic bookmarking

; 

mmp

; 

ski

; 

acetylation

; 

animals

; 

cells, cultured

; 

centromere

; 

dna-binding proteins

; 

down-regulation

; 

fibroblasts

; 

histones

; 

matrix metalloproteinase 10

; 

matrix metalloproteinase 13

; 

matrix metalloproteinase 3

; 

matrix metalloproteinases, secreted

; 

methylation

; 

mice

; 

mitosis

; 

promoter regions, genetic

; 

proto-oncogene proteins

; 

transcriptional activation

; 

collagenase 3

; 

dna

; 

histone h3

; 

histone h3k9

; 

matrix metalloproteinase

; 

nuclear protein

; 

pericentromeric dna

; 

ski protein

; 

stromelysin

; 

stromelysin 2

; 

unclassified drug

; 

collagenase 3

; 

dna binding protein

; 

histone

; 

matrix metalloproteinase

; 

mmp13 protein, mouse

; 

mmp3 protein, mouse

; 

oncoprotein

; 

ski protein, mouse

; 

stromelysin

; 

stromelysin 2

; 

acetylation

; 

animal cell

; 

animal tissue

; 

article

; 

cell cycle g1 phase

; 

cell cycle m phase

; 

chromatin assembly and disassembly

; 

chromosome

; 

chromosome 9

; 

chromosome satellite

; 

controlled study

; 

embryo

; 

enzyme activity

; 

epigenetics

; 

fibroblast

; 

gene

; 

gene expression

; 

gene expression regulation

; 

gene function

; 

gene location

; 

gene repression

; 

gene silencing

; 

genetic association

; 

immunoprecipitation

; 

interphase

; 

methylation

; 

mitosis

; 

mmp10 gene

; 

mmp13 gene

; 

mmp3 gene

; 

mouse

; 

nonhuman

; 

pericentromeric gene

; 

priority journal

; 

promoter region

; 

protein localization

; 

trimethylation

; 

animal

; 

cell culture

; 

centromere

; 

cytology

; 

down regulation

; 

genetics

; 

metabolism

; 

mitosis

; 

transcription initiation
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