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Results: 3
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Large Drosophila germline piRNA clusters are evolutionarily labile and dispensable for transposon regulation.
Daniel Gebert
,
Lena K Neubert
,
Catrin Lloyd
,
Jinghua Gui
,
Ruth Lehmann
,
Felipe Karam Teixeira
Jul 13, 2021
chromosome inversions
flamenco
Fruit fly
Gene Silencing
Germ Cells
gypsy12
Heterochromatin
POSITION-EFFECT VARIEGATION
sterility
transposable elements
Animals
Animals
Genetically Modified
Argonaute Proteins
Chromosome Deletion
Chromosomes
Insect
DNA Transposable Elements
Drosophila Proteins
Drosophila melanogaster
evolution
Molecular
Female
Fertility
Gene Expression Regulation
Developmental
Multigene Family
Ovary
RNA Stability
RNA
Small Interfering
Published by:
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The molecular basis for stability of heterochromatin-mediated silencing in mammals.
Kyoko Hiragami-Hamada
,
Sheila Q Xie
,
Alexander Saveliev
,
Santiago Uribe-Lewis
,
Ana Pombo
,
Richard Festenstein
Jun 16, 2011
POSITION-EFFECT VARIEGATION
FISSION YEAST CENTROMERES
HISTONE H3 LYSINE-9
DROSOPHILA-MELANOGASTER
CHROMATIN-STRUCTURE
GENE-EXPRESSION
PERICENTRIC HETEROCHROMATIN
CHROMODOMAIN PROTEIN
METHYLATION STATES
DNA Methylation
Published by:
View Article
Position-effect variegation revisited
Richard T Timms
,
Iva A Tchasovnikarova
,
Paul J Lehner
Feb 02, 2016
HUSH complex
haploid genetic screen
Heterochromatin
POSITION-EFFECT VARIEGATION
retroviral silencing
Animals
Antigens
Neoplasm
Biological Evolution
Cell Line
Tumor
Chromosomal Position Effects
Drosophila melanogaster
Gene Silencing
Genetic Testing
HIV-1
Haploidy
Heterochromatin
Histones
Humans
Mice
Nuclear Proteins
Phosphoproteins
Virus Latency
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