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Patterning a Target Field

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Title: Patterning a Target Field


1
Patterning a Target Field
2
Morphogen Model
Target Field
Organizing Center
Wolpert L. (1969), J. of Theoretical Biology, 25,
1-47
3
The Vertebrate Limb
4
Limb Polarity
5
Organizing Centers in the Vertebrate Limb
Proximal-Distal
AER
(removal)
Dorsal-Ventral
mesenchyme (proximal limb) ectoderm (autopod)
(rotation)
Anterior-Posterior
ZPA
(transplantation)
6
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7
ZPA Model
8
Notochord patterning and neural development
D
V
D
V
9
Notochord and floor plate induction of ventral
cell identities
D
p0
p1
p2
pMN
p3
FP
V
(Jessell and coworkers)
10
Morphogens and ventral neural tube patterning
11
A8
A6
A7
A5
A4
A3
A2
A1
T3
T1
T2
T1
T2
T3
A8
A1
A7
A2
A6
A3
A4
A5
12
Shh expression
13
Production of an active Shh signal(N-Shhp)
N-Shhp
secretory pathway
Cholesterol
C
N
signal
catalytic
Shh
14
Hedgehog Signaling
15
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16
Generating Knockout Mutant Mice
x
17
Homologous recombination
  • Studies in yeast, and several other simple
    organisms showed possible to mutate gene by
    homologous recombination

Gene A
X
X
NEO
NEO
18
n
19
Cre/Flp-mediated recombination
Gene X
CRE or FLP
LoxP or FRT sites
20
Does Reducing N-Shhp Activity Lead
to Preferential Loss of Posterior Digits -
Morphogen Model?
21
Reducing N-Shhp Levels (Signaling Activity) Leads
to Loss of the Most Posterior Digit
22
Evidence for direct long-range action of Shh
23
Notochord and floor plate induction of ventral
cell identities
D
p0
p1
p2
pMN
p3
FP
V
(Jessell and coworkers)
24
Hedgehog Signaling
25
Generation of chimeras to study requirement for
Smo activity
26
Use of Chimeras to study direct requirement for
Shh signaling
  • Mutation of Smo in some, but not all neural cells
  • Cell autonomous block to Shh signaling
  • Direct signaling cell fates lost
  • Indirect signaling cell fates present

Smo -/-
wt
wt
wt
wt
V
27
Smo is required forp3, pMN and p2 specification
28
Notochord and floor plate induction of ventral
cell identities
D
p0
p1
p2
pMN
p3
FP
V
(Jessell and coworkers)
29
Notochord patterning and neural development
D
V
D
V
30
Shh induces different ventral cell identities at
distinct concentration thresholds
D
Shh
p0
0.05
nM
p1
0.25
nM
p2
0.50
nM
pMN
2.00
nM
p3
3.00
nM
FP
4.00
nMgt
V
(Jessell and coworkers)
31
Hedgehog Signaling
32
Patched (Ptc) Hh receptor
  • Negative regulator of Hh signaling pathway
  • - ligand-independent inhibits Smo
  • - ligand-dependent sequesters Hh
  • Transcriptional target of Hh signaling
  • Negative feedback regulation to limit the range
    of Hh signaling

33
Hedgehog interacting protein (Hip1)
  • Identified in screen for Shh binding proteins
  • Membrane protein anchored by C-terminal
    hydrophobic domain
  • Binds all mammalian Hedgehogs
  • Binding affinity comparable to Ptc1 (low nM)
  • Overexpression/loss-of-function studies
    antagonist of Hh signaling
  • Transcriptional target of Hh signaling

34
Mt-Ptc1 Ptc1-/-Hip1-/-
Mt-Ptc1 Ptc1-/-
Mt-Ptc1 Ptc1-/-Hip1/-
Hip1/-
Wt
HNF3b
Shh
Olig2 Nkx2.2
Pax6 Nkx6.1
Irx3 Dbx1
35
Conclusions
  • Shh long-range organizer.
  • Distinct roles in different systems
  • Response in target field dependent on
    concentration and feedback control

36
FUTURE
gtRelease (Dispatched), movement (GFP),
transduction of signal (Gli-code derepression
and activation) gtTarget genes (microarrays,
bioinformatics)
37
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