part 1: intracellular trafficking week 1: transport through the nuclear pore complex week 2: rna...

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Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation and vesicular transport Week 4: Secretion & cell polarity Week 5: Transport into other organelles (mitochondria, peroxisomes)

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Page 1: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Part 1: Intracellular trafficking

Week 1: Transport through the nuclear pore complexWeek 2: RNA transport, maturation & localizationWeek 3: ER translocation and vesicular transportWeek 4: Secretion & cell polarity

Week 5: Transport into other organelles (mitochondria, peroxisomes)

Page 2: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Part 1: Intracellular trafficking

Week 1: Transport through the nuclear pore complex

Experimental approachesSignals and pathwaysThe nuclear pore complexSoluble transport factors: import + exportThe functions of the small GTPase RanMechanism of translocation

Page 3: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

High concentration of nuclear pore complexes (NPCs) on nuclearenvelopes from Xenopus oocytes

Page 4: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Signals are necessary and sufficient for nuclear import

Page 5: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Npl-coated gold particles can translocate across NPCs

Page 6: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

SV40 T Ag contains small nuclear localization signal (NLS)

SV40 T Ag K128N

SV40 T Ag contains small nuclear localization signal (NLS

SV40 T Ag WT

Page 7: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

In vitro transport assay to nuclear import I

Page 8: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

In vitro transport assay to nuclear import II

Page 9: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

In vitro transport assay to nuclear import III

Extract + energy Fraction A

Page 10: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

RanGTP displaces importin from importin

importin

importin

Page 11: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

The NLS receptor importin

Page 12: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

The NLS receptor importin

Page 13: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Ran-GTP

NPC

cargo

Importin

The import receptor importin

Page 14: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

RanGTP displaces import cargoes from importins

Page 15: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

SUMMARY

I. Signals target proteins into and out of the nucleusa. active transportb. signals are necessary and sufficient

II.Transport occurs through the nuclear pore complex (NPC)a. NPC has aqueous channelb. no unfolding of cargoes is requiredc. transport is bi-directional

III. Signals are recognized by soluble receptors: importinsa. bind specific classes of cargob. shuttle between cytoplasm and nucleusc. interact with nucleoporins

Page 16: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Conformational changes that regulate cargo binding

Cse1 with cargo Cse1 without cargo

Page 17: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Structure of the exportin Cse1 with RanGTP and cargo

Page 18: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation
Page 19: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Establishment of a “Ran-gradient”

Page 20: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Ran cycle is coupled to transport cycle

Page 21: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Consumption of one GTP per transport cycle

Page 22: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Inversion of the Ran gradient leads to an inversion of the

direction of transport

export cargo

+ exportin1

cytoplasmic RanGTPnuclear RanGTP

Page 23: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Import-Export Cycle: the role of adaptors

Page 24: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Ran gradient throughout the cell cycle

Page 25: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

G1G2

S

M

RanGTPase

Replicationlicensing

Nucleocytoplasmictransport

Chromatincondensatio

n

Mitotic Spindle Assembly

KinetochoreAssembly

Nuclear Pore

Assembly Nuclear Envelope Fusion

Page 26: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

THE METAZOAN NPC

Page 27: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Rout et al.(2000) JCB 148:635

THE YEAST NPC

Page 28: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Interaction between nuclear transport receptors and the FG-repeats within the NPC

Page 29: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation
Page 30: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Organization of the NPC

Page 31: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

Brownian Gate Selective Phase ‘Oily Spaghetti

Models for NPC function

Page 32: Part 1: Intracellular trafficking Week 1: Transport through the nuclear pore complex Week 2: RNA transport, maturation & localization Week 3: ER translocation

SUMMARY

I. Short signals target proteins into and out of the nucleusMany proteins shuttle: regulation

II. Many transport events are mediated by the importin b superfamily of importins and exportins

III. Directionality is conferred by nuclear RanGTPRan-GTP mediates substrate release (importins) or substrate binding (exportins)per import/export cycle ~ only one GTP is hydrolyzedRanGTP gradient provides energy for transport

IV. NPC functions through facilitated diffusionFG rich repeats provide docking sites for transport factors