Silence of the Genes. Genetics The study of inheritance.

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Silence of the Genes

Transcript of Silence of the Genes. Genetics The study of inheritance.

Page 1: Silence of the Genes. Genetics The study of inheritance.

Silence of the Genes

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Genetics

• The study of inheritance

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Gregor Mendel(1823-1884)

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Mendelian Ratios

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Mutation

ATGCGAGCGAGTATGCGATCGAGT Genotype

Phenotype

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Epigenetics

• Heritable changes in gene expression that do not involve changes in DNA sequence.

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Epi-mutation

ATGCGAACGAGTATGCGATCGAGT Genotype

Phenotype

DNA Modifications

Histone Modifications

Proteins

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Nucleosome

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DNA

histones

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DNAMethylation

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histones

CH3

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HistoneMethylation

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histones

CH3

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Examples of Epigenetics

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X-Inactivation

inactivation

male female

X Y X Xunequal expression

equal expressionX Y X X

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Barr Body

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Calico Cat

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X Xo O

X Xo O X Xo O

orangeallele

blackallele

black sector orange sector

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Other Examples of Epigenetics

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Imprinting

• Imprinted genes are expressed differently depending on whether they are inherited through the maternal or paternal parent.

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Horses and Donkeys

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male female

female

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Gynogenotes

• Embryos containing two female genomes

– do not develop normally– fail due to underdeveloped extraembryonic

placental tissue

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Androgenotes

• Embryos containing two paternal genomes

– result in abnormal (often overgrown) embryo– display overdeveloped extraembryonic

placental tissue

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Maternal vs. Paternal Imprinting

• Male genome wants to promote growth.

• Female genome wants to inhibit growth.

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Resetting Methylation Patterns

Primordial Germ Cells

male

female

met

hyla

tion

developmental time

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Battle for Maintaining DNA Methylation

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Battle to Maintain Methylationm

ethy

lati

on

developmental time

Fertilization

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Female Strategy

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Genes that promote growth

Fertilization

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Male Strategy

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Antisense

Genes that inhibit growth

Fertilization

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Resetting Imprints is Important for Proper Development

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Dolly

• First mammal to be cloned from an adult cell.

• Developed illness common in older sheep (arthritis)

• Probably due to abnormal imprinting

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Gene Silencing

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HeterochromatinDensely staining condensed chromosomal regions; believed to be transcriptionally inert.

EuchromatinA chromosomal region that stains normally; thought to contain the normally functioning genes.

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Heterochromatin

Paul Fransz

B. McClintock

IV

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Heterochromatin

• Centromeric regions

• Telomeric regions

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Position Effect Variegation

W+

W+

W+

W+

heterochromatin

spreading

suppressed

enhanced

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Post-Transcriptional Gene Silencing

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Anti-Sense

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Sense Also Works?

Guo and Kemphues, (1995)

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What is Causing Silencing?

?

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dsRNAPost Transcriptional

?

Fire et al. (1998)

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RNAi

?

Fire et al. (1998)

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RNAi

AAA

AAA

Dicer

RISC

dsRNA

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AAA

AAA

Dicer

RISC

dsRNA

RNAi

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RNA Silencing

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cosuppression

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quelling

RNA Silencing

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Post TranscriptionalGene Silencing

(PTGS)

RNA Silencing

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RNA Silencing

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RNA Interference(RNAi)

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RNA Interference

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DNA Methylation

Mette et al. (2000)

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RNAi and Transcriptional Silencing

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Transcriptional Silencing

Mette et al. (2000)

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Micro RNAs

Grishok et al. (2001)

dicer

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RNAi Genes in S. pombe?

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RNAi Genes in pombe?

• Yes!!

• Mutation of these genes results in loss of centromeric silencing.

• Loss of RNAi reveals centromeric transcripts.

• dsRNA from centromere targets transcriptional silencing.

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Cen

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Cen

RNAi

Small RNAs

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Cen

RNAi

SilencingMachinery Small RNAs

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Cen

RNAi

SilencingMachinery

Small RNAs

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Cen

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RNAi

• Is important for initiation and maintenance of heterochromatin at the centromere.

• Could be involved in other silencing phenomena

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Where else may RNAi be functioning to silence genes?

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X Chromosome Inactivation(RNAi?)

Xist

Tsix

Heard et al (2001)

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Xist

Tsix

Heard et al (2001)

RNAi

SilencingMachinery

X Chromosome Inactivation(RNAi?)

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Xist

Tsix

Heard et al (2001)

RNAi

SilencingMachinery

X Chromosome Inactivation(RNAi?)

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Imprinting(RNAi?)

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Antisense

RNAi

SilencingMachinery

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Imprinting(RNAi?)

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Antisense

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Imprinting(RNAi?)

RNAi

SilencingMachinery

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HeterochromatinDensely staining condensed chromosomal regions; are not necessarily transcriptionally inert. RNAi is important for its initiation and maintenance.

EuchromatinChromosomal regions that do not densely stain; thought to contain functioning genes that maybe transcriptionally active.