Download lecture 4 as a pdf

Survey
yes no Was this document useful for you?
   Thank you for your participation!

* Your assessment is very important for improving the workof artificial intelligence, which forms the content of this project

Document related concepts

Chromatophore wikipedia , lookup

Mitosis wikipedia , lookup

Tissue engineering wikipedia , lookup

Cell growth wikipedia , lookup

Cell encapsulation wikipedia , lookup

Cell culture wikipedia , lookup

Amitosis wikipedia , lookup

Cellular differentiation wikipedia , lookup

List of types of proteins wikipedia , lookup

Organ-on-a-chip wikipedia , lookup

Quorum sensing wikipedia , lookup

Programmed cell death wikipedia , lookup

SULF1 wikipedia , lookup

Purinergic signalling wikipedia , lookup

Paracrine signalling wikipedia , lookup

Signal transduction wikipedia , lookup

Transcript
Lecture 4:
Keeping things in proportion.
Again, these slides contain all of the text and important images,
but not all of the simply illustrative images (for copyright
reasons).
Why is the amount of skin always right for the leg length?
…or any other growth?
Why is the amount of skin always right for the leg length?
…or any other growth?
We can get a hint from the fact that applying a mechanical force
(excessive stretch) to human skin drives skin growth
Plate cells on to shaped
islands
How about 'mechanically isolated' organs?
Spleen:
TOTAL mass = mass
of one normal spleen.
Add lots of foetal spleens
Throw spleen away
How big do they grow??
How about 'mechanically isolated' organs?
Spleen:
TOTAL mass = mass
of one normal spleen.
Add lots of foetal spleens
But if you do it with a
THYMUS, each one
grows normal size
Throw spleen away
How big do they grow??
Quorum-sensing
Autocrine signalling:
Y
Y
Y
Y
Secrete
factor X
Receptors for
factor X
Threshold
detection
Response
(stop growing,
or differentiate)
Y
Quorum-sensing
Autocrine signalling:
Y
Y
Y
Y
Secrete
factor X
Receptors for
factor X
Threshold
detection
Response
(stop growing,
or differentiate)
Y
Quorum-sensing
Autocrine signalling:
Y
Y
Y
Y
Secrete
factor X
Receptors for
factor X
Threshold
detection
Response
(stop growing,
or differentiate)
Y
Quorum-sensing
Autocrine signalling:
Y
Y
Y
Y
Secrete
factor X
Receptors for
factor X
Threshold
detection
Response
(stop growing,
or differentiate)
Y
Evidence for quorum sensing: the kidney
Wnt4 expression weak
Wnt4 expression strong
Ref: Davies JA (2005) Mechanisms of morphogenesis
Evidence for quorum sensing: the kidney
Cells have no way
of knowing they
have made a big
enough aggregate
This mimics Wnt
signalling even in the
absence of Wnts
Cells think the
aggregate is already
big
Ref: Davies JA (2005) Mechanisms of morphogenesis
Evidence for quorum sensing: the kidney
These cells show
only a low level of
the reporter gene
construct that
replaced the
functional Wnt.
This mimics Wnt
signalling even in the
absence of Wnts
Ref: Davies JA (2005) Mechanisms of morphogenesis
Kidney model
Paracrine signalling:
Wnt4
Y
Y
Y
Y
Secrete
factor X
Receptors for
factor X
Threshold
detection
Response
(stop growing,
& differentiate)
Add
feedback
Y
"Are we big enough for that other tissue?"
●
The trophic theory
Innervation of chick limbs:
Hamburger V (1934) J Exp Zool 68: 449-494; Hamburger V (1939) Physiol Zool 12: 268-284
Fewer neurons
when target field
is reduced
More neurons
when target field
is increased
"fixed" maximum
t
elec
cell
th
dea
mito
sis
ive
Number of neurons in motor pool
Time course of neuronal development:
Embryonic stage
T.D.
neurotrophin
"independent"
Survival now depends on T.D.
neurotrophins
"fixed" maximum
t
elec
cell
th
dea
mito
sis
ive
Number of neurons in motor pool
Time course of neuronal development:
Embryonic stage
Neurotrophins:
●
●
●
●
●
●
NGF
BDNF
NT-3
GDNF
CNTF
HGF
This is not just a neuronal story…
The Trophic Theory: (Martin Raff)
Constitutive death wish
Any cell
Elective cell death
This is not just a neuronal story…
The Trophic Theory: (Martin Raff)
Constitutive death wish
Any cell
Survival
factor (can
be secreted
or contact)
Elective cell death