cytoplasmic regulation lifetime localization initiation

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Cytoplasmic regulation lifetime localization initiation

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Cytoplasmic regulation lifetime localization initiation. Post-transcriptional regulation 1) mRNA processing 2) export from nucleus 3) mRNA degradation 4) mRNA localization 5) initiation of translation varies >10x. Initiation in Eukaryotes eIF4E binds mRNA cap - PowerPoint PPT Presentation

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Page 1: Cytoplasmic regulation  lifetime  localization  initiation

Cytoplasmic regulation

• lifetime

• localization

• initiation

Page 2: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulation1) mRNA processing2) export from nucleus3) mRNA degradation 4) mRNA localization5) initiation of translation varies >10x

Page 3: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes

1)eIF4E binds mRNA cap

• Won’t bind unless 5’cap is methylated

Page 4: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes

1)eIF4E binds mRNA cap

• Won’t bind unless 5’cap is methylated

• eIF4E & PABP protect RNA from degradation

Page 5: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes

1)eIF4E binds mRNA cap

• Won’t bind unless 5’cap is methylated

• eIF4E & PABP protect RNA from degradation

• eIF4E must be kinased to be active

Page 6: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes

1)eIF4E binds mRNA cap

• Won’t bind unless 5’cap is methylated

• eIF4E & PABP protect RNA from degradation

• eIF4E must be kinased to be active

• XS = cancer

Page 7: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes1) eIF4E binds mRNA cap2) eIF4G binds eIF4E, eIF4A & PAB: complex = eIF4F

Page 8: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes1) eIF4E binds mRNA cap2) eIF4G binds eIF4E, eIF4A & PAB: complex = eIF4F3) itRNA:met & eIF1, eIF2 & eIF3 bind 40S subunit

Page 9: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes3) itRNA:met & eIF1, eIF2 & eIF3 bind 40S subunit4) 43S complex binds eIF4F5) eIF4A & eIF4B scan down & melt mRNA (using ATP)

Page 10: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes3) itRNA:met & eIF1, eIF2 & eIF3 bind 40S subunit4) 43S complex binds eIF4F5) eIF4A & eIF4B scan down & melt mRNA (using ATP)6) 43S follows until finds Kozak sequence 5’-ACCAUG

Page 11: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes

7) initiator tRNA:met binds start codon (AUG), eIF2 hydrolyzes GTP

Page 12: Cytoplasmic regulation  lifetime  localization  initiation

Initiation in Eukaryotes8) 60S subunit binds

itRNA:met is at P siteribosome thinks it is a protein!why 60S subunit doesn’tbind until itRNA:met

binds AUGwhy have itRNA:met

Page 13: Cytoplasmic regulation  lifetime  localization  initiation

Regulation

1)Key step = eIF4E binds mRNA cap

• Won’t bind unless 5’cap is methylated

• eIF4E must be kinased to be active

• 4E-BP1 binds eIF4E & keeps it inactive until kinased

Page 14: Cytoplasmic regulation  lifetime  localization  initiation

Regulating Translation

1)eIF4F is also

regulated many

other ways!

Page 15: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulation2) Other key step = eIF2

Page 16: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulation2) Other key step = eIF2• controls assembly of 43S

Page 17: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulation2) Other key step = eIF2• controls assembly of 43S•Highly regulated!

Page 18: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulation2) Other key step = eIF2• controls assembly of 43S•Highly regulated!•Inactive if kinased= virus defence

Page 19: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulationinitiation of translation varies >10x• 5' UTR sequences also affect rate

Page 20: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulationinitiation of translation varies >10x• 5' UTR sequences also affect rate• some adopt 2˚ structures hard to melt

Page 21: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulationinitiation of translation varies >10x• 5' UTR sequences also affect rate• some adopt 2˚ structures hard to melt

Page 22: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulationinitiation of translation varies >10x• 5' UTR sequences also affect rate• some adopt 2˚ structures hard to melt• proteins bind others, enhance or repress translation

Page 23: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulationinitiation of translation varies >10x• 5' UTR sequences also affect rate• some adopt 2˚ structures hard to melt• proteins bind others, enhance or repress translation•microRNA bind specific mRNA & block translation

Page 24: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulationinitiation of translation varies >10x• 5' UTR sequences also affect rate• some adopt 2˚ structures hard to melt• proteins bind others, enhance or repress translation•microRNA bind specific mRNA & block translation•Many bind 3’UTR!

Page 25: Cytoplasmic regulation  lifetime  localization  initiation

Post-transcriptional regulation1) mRNA processing2) export from nucleus3) mRNA degradation 4) mRNA localization5) initiation of translation varies >10x6) regulating enzyme activity• activators•Inhibitors•Covalent mods

Page 26: Cytoplasmic regulation  lifetime  localization  initiation

Protein degradationSome have motifs marking them for polyubiquitination:• E1 enzymes activate ubiquitin• E2 enzymes conjugate ubiquitin• E3 ub ligases determine specificity, eg for N-terminus

Page 27: Cytoplasmic regulation  lifetime  localization  initiation

Protein degradation• E3 ub ligases determine specificity• >1300 E3 ligases in Arabidopsis• 4 main classes according to cullin scaffolding protein

Page 28: Cytoplasmic regulation  lifetime  localization  initiation

DWD ProteinsJae-Hoon Lee’s research• putative substrate receptors for CUL4-based E3 ligases

Page 29: Cytoplasmic regulation  lifetime  localization  initiation

DWD ProteinsJae-Hoon Lee’s research• putative substrate receptors for CUL4-based E3 ligases• used bioinformatics to find all Arabidopsis & rice DWDs

Page 30: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins• used bioinformatics to find all Arabidopsis & rice DWDs•Placed in subgroups based on DWD sequence

Page 31: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins• used bioinformatics to find all Arabidopsis & rice DWDs•Placed in subgroups based on DWD sequence•Tested members of eachsubgroup for DDB1 binding

Page 32: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Tested members of each subgroup for DDB1 binding • co-immunoprecipitation

Page 33: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Tested members of each subgroup for DDB1 binding • co-immunoprecipitation•Two-hybrid: identifiesinteracting proteins

Page 34: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Tested members of each subgroup for DDB1 binding • co-immunoprecipitation•Two-hybrid: identifiesinteracting proteins•Only get transcription ifone hybrid supplies Act D& other supplies DNABinding Domain

Page 35: Cytoplasmic regulation  lifetime  localization  initiation

DWD ProteinsTwo-hybrid libraries are used to screen for protein-protein interactions

Page 36: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Tested members of each subgroup for DDB1 binding • co-immunoprecipitation•Two-hybrid

Page 37: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Tested members of each subgroup for DDB1 binding • co-immunoprecipitation•Cul4cs &PRL1 (PleiotropicRegulatory Locus 1) hadSimilar phenotypes

Page 38: Cytoplasmic regulation  lifetime  localization  initiation

DWD ProteinsCul4cs &PRL1 (PleiotropicRegulatory Locus 1) hadsimilar phenotypesPRL1 may be receptor for AKIN10 degradation (involved in sugar sensing)

Page 39: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Found T-DNA insertions

•3 were sensitive to ABA

Page 40: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Found T-DNA insertions

•3 were sensitive to ABA• ABI5 was elevated in dwa mutants

Page 41: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Found T-DNA insertions

•3 were sensitive to ABA• ABI5 was elevated in dwa mutants•ABI5 was degraded more slowly in dwa extracts

Page 42: Cytoplasmic regulation  lifetime  localization  initiation

DWD Proteins•Found T-DNA insertions

•3 were sensitive to ABA• ABI5 was elevated in dwa mutants•ABI5 was degraded more slowly in dwa extracts•DWA1 & DWA2 target ABI5 for degradation