current model for how cells become neural 1)default state is neural 2)local secretion of bmps by...

33
Current Model for how cells become neural 1) Default state is neural 2) Local secretion of BMPs by epidermis inhibits neural fate 3) Local secretion of noggin, chordin by dorsal lip or mesoderm inhibits BMP signaling 4) Inhibition of BMP signaling give rise to neural fate Double Inhibition Model for Neural fate 1

Upload: maryann-curtis

Post on 16-Dec-2015

218 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Current Model for how cells become neural

1) Default state is neural

2) Local secretion of BMPs by epidermis inhibits neural fate

3) Local secretion of noggin, chordin by dorsal lip or mesoderm inhibits BMP signaling

4) Inhibition of BMP signaling give rise to neural fate

Double Inhibition Model for Neural fate

1

Page 2: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Neural Development

2

How do cells become neurons?

– Environmental factors• Inductive events

– Genetic factors• Competence

Cell lineage

Timing

Page 3: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

- How do ectodermal cells become neural cells?

- How is polarity established?

Dorsal Ventral

?

3

Page 4: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Neurulation: Formation of the Neural Tube

4

Page 5: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Looking at Dorso Ventral Patterning

During development, various structures are formed as the posterior part of the neural tube becomes the spinal cord:

Dorsal

•Roof Plate

•Dorsal Root Ganglion

•Sensory Neurons

Ventral

•Floor Plate

•Motor Neurons

5

Page 6: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Patterning of the spinal cord is induced by notochord

neural tube

notochord

floor plate

normal embryo extra notochord = ectopic floor plate

6

Experiment: Graft an extra notocord near neural tube

Result: An extra floor plate forms

Page 7: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Induction by floor plate

extra dorsal floor plate = ectopic floor plate where roof plate should be

extra lateral floor plate = ectopic lateral floor plate

7

Experiment: Graft an extra floor plate near the neural tube

Result: An extra floor plate forms

Page 8: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Extra floor plates = extra motor neurons

normal embryo

Motor neurons always form at a set distance from the source of inducing signal.

mm

extra notochord (or floor plate)

m m

m m

8

Page 9: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Induction of dorsal/ventral neural tube formation

notochord

floor plate

But what are the inducers?

Determination of cell-fates in the spinal cord

9

Page 10: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Looking at Dorso Ventral Patterning

Sonic Hedgehog (SHH) is a secreted protein expressed in the floor plate and notochord and it is the signal that induces the ventral fate.

What is the signal released by the notochord?

early later10

Page 11: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Properties of Sonic Hedgehog

1. Secreted molecule

2. Modification by cholesterol keeps most SHH on cell-surface

3. Receptor for SHH is Patched, activates a signaling cascade, leading to changes in gene expression

11

Page 12: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Loss of SHH leads to loss of ventral cell-fates

Addition of SHH produces ventral cell-fates

12

Patterning in the Spinal Cord---many different cell-fates

How does one molecule induce multiple fates?

Page 13: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Patterning in the Spinal Cord---Expression ofDifferent transcription factors

13

Page 14: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

The particular fate of different cells depends on the amount of SHH that they are exposed to.

Low SHH Ventral Interneurons

Medium SHH Motor Neurons

High SHH Floor Plate Cells

Model: Different SHH concentrations induce different cell fates

14

Page 15: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Morphogen hypothesis

1. Morphogens are secreted molecules that diffuse from a point source.

2. A morphogen determines cell fate based on its concentration.

3. Morphogens control the expression of downstream genes.

4. Different concentrations of a morphogen may turn on/off the expression of different target genes.

15

Page 16: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

How a gradient produces different cell-types

16

Page 17: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

How a gradient produces different cell-types

17

Page 18: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Is SHH a morphogen?

1. Concentration dependence of cell-fates

2. Direct action at a distance

18

Page 19: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Different concentrations of SHH produce different cell fates

Expt: add different SHH concentrations to young spinal cord explants Result: different genes are expressed in a dose-dependent manner

19

Page 20: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

20

SHH acts directly on cells over a distance

Expt: Locally add dominant-negative SHH receptor to spinal cord to decrease SHH signaling

Result: Less SHH causes cells to take on a more dorsal fate

Page 21: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

How does a graded concentration give sharp boundaries of gene expression?

21

Page 22: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

22

Two mechanisms that generate sharp boundaries:

1. Cell A adheres to Cell A (or Cell A repels Cell B)

2. Cell A inhibits Cell B fate and Cell B inhibits Cell A fate

Page 23: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

23

The vertebrate spinal cord and the Drosophila embryo use gradients to induce different cell fates

Page 24: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

bcd

Bcd

Bicoid is a morphogen that sets up the body plan

otd

ems

btd

hb

24

Page 25: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Nobel 1995: Lewis, Nusslein-Volhard, WieschausGenetic basis of embryonic development

25

Page 26: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

26

The other half of the story: BMPs regulate dorsal fates

Page 27: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

27

SHH is not the only inducer of the neural tube

Expt: ablate the notochord

Result: no ventral motor neurons, expansion of dorsal sensory neurons

Page 28: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

The roofplate induces the dorsal cell fate

Expt: Ablate the roofplate, look at which genes are expressed

Result: loss of dorsal fates, expansion of ventral fates

28

Page 29: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

29

BMP4 is produced by the roof plate. It induces dorsal cell fates and inhibits ventral fates.

What key experiments would show this?

Page 30: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Looking at Dorso Ventral Patterning

• SHH signaling is required to adopt a ventral fate

• BMP is necessary to induce dorsal cell fates

• BMP inhibits ventral fate

• SHH inhibits dorsal fateBMP

SHH

dorsal ventral

BMP

SHH

dorsal ventral

30

Page 31: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Practical Implications: Manipulation of Cell fates

31

The pathway to induce a motor neuron is simple

Page 32: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

32

Differentiation of embryonic stem cells into motor neurons

Expt: treat ES cells with SHH, look for expression of motorneuron genes,transplant motorneurons into the developing mouse embryo

Result: motorneurons made in a dishfunction as motorneurons in a mouse

Therapy for degenerative disorders?

Page 33: Current Model for how cells become neural 1)Default state is neural 2)Local secretion of BMPs by epidermis inhibits neural fate 3)Local secretion of noggin,

Cell fate determined by position in a gradient!!!!!