Background: Synaptic plasticity is the neuronal capacity to modify the function and structure of dendritic spines (DS) in response to neuromodulators. Sex steroids, particularly 17β-estradiol (E2) and progesterone (P4), are key regulators in the control of DS formation through multiprotein complexes including WAVE1 protein, and are thus fundamental for the development of learning and memory. Objectives: The aim of this work was to evaluate the molecular switch Cdk5 kinase/protein phosphatase 2A (PP2A) in the control of WAVE1 protein (phosphorylation/dephosphorylation) and the regulation of WAVE1 and cortactin to the Arp2/3 complex, in response to rapid treatments with E2 and P4 in cortical neuronal cells. Results: Rapid treatment with E2 and P4 modified neuronal morphology and significantly increased the number of DS. This effect was reduced by the use of a Cdk5 inhibitor (Roscovitine). In contrast, inhibition of PP2A with PP2A dominant negative construct significantly increased DS formation, evidencing the participation of kinase/phosphatase in the regulation of WAVE1 in DS formation induced by E2 and P4. Cortactin regulates DS formation via Src and PAK1 kinase induced by E2 and P4. Both cortactin and WAVE1 signal to Arp2/3 complex to synergistically promote actin nucleation. Conclusion: These results suggest that E2 and P4 dynamically regulate neuron morphology through nongenomic signaling via cortactin/WAVE1-Arp2/3 complex. The control of these proteins is tightly orchestrated by phosphorylation, where kinases and phosphatases are essential for actin nucleation and, finally, DS formation. This work provides a deeper understanding of the biological actions of sex steroids in the regulation of DS turnover and neuronal plasticity processes.

1.
Kasai
H
,
Fukuda
M
,
Watanabe
S
,
Hayashi-Takagi
A
,
Noguchi
J
.
Structural dynamics of dendritic spines in memory and cognition
.
Trends Neurosci
.
2010
Mar
;
33
(
3
):
121
9
.
[PubMed]
0166-2236
2.
Penzes
P
,
Cahill
ME
,
Jones
KA
,
VanLeeuwen
JE
,
Woolfrey
KM
.
Dendritic spine pathology in neuropsychiatric disorders
.
Nat Neurosci
.
2011
Mar
;
14
(
3
):
285
93
.
[PubMed]
1097-6256
3.
McEwen
BS
,
Milner
TA
.
Understanding the broad influence of sex hormones and sex differences in the brain
.
J Neurosci Res
.
2017
Jan
;
95
(
1-2
):
24
39
.
[PubMed]
0360-4012
4.
Hansberg-Pastor
V
,
González-Arenas
A
,
Piña-Medina
AG
,
Camacho-Arroyo
I
.
Sex Hormones Regulate Cytoskeletal Proteins Involved in Brain Plasticity
.
Front Psychiatry
.
2015
Nov
;
6
:
165
.
[PubMed]
1664-0640
5.
Arevalo
MA
,
Azcoitia
I
,
Gonzalez-Burgos
I
,
Garcia-Segura
LM
.
Signaling mechanisms mediating the regulation of synaptic plasticity and memory by estradiol
.
Horm Behav
.
2015
Aug
;
74
:
19
27
.
[PubMed]
0018-506X
6.
Phan
A
,
Gabor
CS
,
Favaro
KJ
,
Kaschack
S
,
Armstrong
JN
,
MacLusky
NJ
, et al
Low doses of 17β-estradiol rapidly improve learning and increase hippocampal dendritic spines
.
Neuropsychopharmacology
.
2012
Sep
;
37
(
10
):
2299
309
.
[PubMed]
0893-133X
7.
Sakamoto
H
,
Ukena
K
,
Tsutsui
K
.
Dendritic spine formation in response to progesterone synthesized de novo in the developing Purkinje cell in rats
.
Neurosci Lett
.
2002
Apr
;
322
(
2
):
111
5
.
[PubMed]
0304-3940
8.
Frankfurt
M
,
Luine
V
.
The evolving role of dendritic spines and memory: Interaction(s) with estradiol
.
Horm Behav
.
2015
Aug
;
74
:
28
36
.
[PubMed]
0018-506X
9.
Melcangi
RC
,
Giatti
S
,
Calabrese
D
,
Pesaresi
M
,
Cermenati
G
,
Mitro
N
, et al
Levels and actions of progesterone and its metabolites in the nervous system during physiological and pathological conditions
.
Prog Neurobiol
.
2014
Feb
;
113
:
56
69
.
[PubMed]
0301-0082
10.
Sherwin
BB
,
Henry
JF
.
Brain aging modulates the neuroprotective effects of estrogen on selective aspects of cognition in women: a critical review
.
Front Neuroendocrinol
.
2008
Jan
;
29
(
1
):
88
113
.
[PubMed]
0091-3022
11.
Hlushchenko
I
,
Koskinen
M
,
Hotulainen
P
.
Dendritic spine actin dynamics in neuronal maturation and synaptic plasticity
.
Cytoskeleton (Hoboken)
.
2016
Sep
;
73
(
9
):
435
41
.
[PubMed]
1949-3584
12.
Helgeson
LA
,
Prendergast
JG
,
Wagner
AR
,
Rodnick-Smith
M
,
Nolen
BJ
.
Interactions with actin monomers, actin filaments, and Arp2/3 complex define the roles of WASP family proteins and cortactin in coordinately regulating branched actin networks
.
J Biol Chem
.
2014
Oct
;
289
(
42
):
28856
69
.
[PubMed]
0021-9258
13.
Zhang
J
,
Zhao
B
,
Zhu
X
,
Li
J
,
Wu
F
,
Li
S
, et al
Phosphorylation and SUMOylation of CRMP2 regulate the formation and maturation of dendritic spines
.
Brain Res Bull
.
2018
May
;
139
:
21
30
.
[PubMed]
0361-9230
14.
Lee
Y
,
Kim
D
,
Ryu
JR
,
Zhang
Y
,
Kim
S
,
Kim
Y
, et al
Phosphorylation of CYFIP2, a component of the WAVE-regulatory complex, regulates dendritic spine density and neurite outgrowth in cultured hippocampal neurons potentially by affecting the complex assembly
.
Neuroreport
.
2017
Aug
;
28
(
12
):
749
54
.
[PubMed]
0959-4965
15.
Ceglia
I
,
Kim
Y
,
Nairn
AC
,
Greengard
P
.
Signaling pathways controlling the phosphorylation state of WAVE1, a regulator of actin polymerization
.
J Neurochem
.
2010
Jul
;
114
(
1
):
182
90
.
[PubMed]
0022-3042
16.
Young
MR
,
Kolesiak
K
,
Meisinger
J
.
Protein phosphatase-2A regulates endothelial cell motility and both the phosphorylation and the stability of focal adhesion complexes
.
Int J Cancer
.
2002
Jul
;
100
(
3
):
276
82
.
[PubMed]
0020-7136
17.
Winder
DG
,
Sweatt
JD
.
Roles of serine/threonine phosphatases in hippocampal synaptic plasticity
.
Nat Rev Neurosci
.
2001
Jul
;
2
(
7
):
461
74
.
[PubMed]
1471-003X
18.
Hering
H
,
Sheng
M
.
Activity-dependent redistribution and essential role of cortactin in dendritic spine morphogenesis
.
J Neurosci
.
2003
Dec
;
23
(
37
):
11759
69
.
[PubMed]
0270-6474
19.
Daly
RJ
.
Cortactin signalling and dynamic actin networks
.
Biochem J
.
2004
Aug
;
382
(
Pt 1
):
13
25
.
[PubMed]
0264-6021
20.
Weaver
AM
,
Heuser
JE
,
Karginov
AV
,
Lee
WL
,
Parsons
JT
,
Cooper
JA
.
Interaction of cortactin and N-WASp with Arp2/3 complex
.
Curr Biol
.
2002
Aug
;
12
(
15
):
1270
8
.
[PubMed]
0960-9822
21.
Sanchez
AM
,
Flamini
MI
,
Genazzani
AR
,
Simoncini
T
.
Effects of progesterone and medroxyprogesterone on actin remodeling and neuronal spine formation
.
Mol Endocrinol
.
2013
Apr
;
27
(
4
):
693
702
.
[PubMed]
0888-8809
22.
Sanchez
AM
,
Flamini
MI
,
Fu
XD
,
Mannella
P
,
Giretti
MS
,
Goglia
L
, et al
Rapid signaling of estrogen to WAVE1 and moesin controls neuronal spine formation via the actin cytoskeleton
.
Mol Endocrinol
.
2009
Aug
;
23
(
8
):
1193
202
.
[PubMed]
0888-8809
23.
Kaech
S
,
Banker
G
.
Culturing hippocampal neurons
.
Nat Protoc
.
2006
;
1
(
5
):
2406
15
.
[PubMed]
1754-2189
24.
Schubert
V
,
Dotti
CG
.
Transmitting on actin: synaptic control of dendritic architecture
.
J Cell Sci
.
2007
Jan
;
120
(
Pt 2
):
205
12
.
[PubMed]
0021-9533
25.
Rodriguez
A
,
Ehlenberger
DB
,
Dickstein
DL
,
Hof
PR
,
Wearne
SL
.
Automated three-dimensional detection and shape classification of dendritic spines from fluorescence microscopy images
.
PLoS One
.
2008
Apr
;
3
(
4
):
e1997
.
[PubMed]
1932-6203
26.
Tehrani
S
,
Tomasevic
N
,
Weed
S
,
Sakowicz
R
,
Cooper
JA
.
Src phosphorylation of cortactin enhances actin assembly
.
Proc Natl Acad Sci USA
.
2007
Jul
;
104
(
29
):
11933
8
.
[PubMed]
0027-8424
27.
Maiti
P
,
Manna
J
,
Ilavazhagan
G
,
Rossignol
J
,
Dunbar
GL
.
Molecular regulation of dendritic spine dynamics and their potential impact on synaptic plasticity and neurological diseases
.
Neurosci Biobehav Rev
.
2015
Dec
;
59
:
208
37
.
[PubMed]
0149-7634
28.
Moeller
ML
,
Shi
Y
,
Reichardt
LF
,
Ethell
IM
.
EphB receptors regulate dendritic spine morphogenesis through the recruitment/phosphorylation of focal adhesion kinase and RhoA activation
.
J Biol Chem
.
2006
Jan
;
281
(
3
):
1587
98
.
[PubMed]
0021-9258
29.
Chen
J
,
Martin
BL
,
Brautigan
DL
.
Regulation of protein serine-threonine phosphatase type-2A by tyrosine phosphorylation
.
Science
.
1992
Aug
;
257
(
5074
):
1261
4
.
[PubMed]
0036-8075
30.
Liu
R
,
Wang
JZ
.
Protein phosphatase 2A in Alzheimer’s disease
.
Pathophysiology
.
2009
Oct
;
16
(
4
):
273
7
.
[PubMed]
0928-4680
31.
Sontag
JM
,
Sontag
E
.
Protein phosphatase 2A dysfunction in Alzheimer’s disease
.
Front Mol Neurosci
.
2014
Mar
;
7
:
16
.
[PubMed]
1662-5099
32.
Vidal
C
,
Geny
B
,
Melle
J
,
Jandrot-Perrus
M
,
Fontenay-Roupie
M
.
Cdc42/Rac1-dependent activation of the p21-activated kinase (PAK) regulates human platelet lamellipodia spreading: implication of the cortical-actin binding protein cortactin
.
Blood
.
2002
Dec
;
100
(
13
):
4462
9
.
[PubMed]
0006-4971
33.
Yin
M
,
Ma
W
,
An
L
.
Cortactin in cancer cell migration and invasion
.
Oncotarget
.
2017
Sep
;
8
(
50
):
88232
43
.
[PubMed]
1949-2553
34.
Vicente-Manzanares
M
,
Hodges
J
,
Horwitz
AR
.
Dendritic Spines: Similarities with Protrusions and Adhesions in Migrating Cells
.
Open Neurosci J
.
2009
Jan
;
3
(
2
):
87
96
.
[PubMed]
1874-0820
35.
Moshfegh
Y
,
Bravo-Cordero
JJ
,
Miskolci
V
,
Condeelis
J
,
Hodgson
L
.
A Trio-Rac1-Pak1 signalling axis drives invadopodia disassembly
.
Nat Cell Biol
.
2014
Jun
;
16
(
6
):
574
86
.
[PubMed]
1465-7392
36.
Jeannot
P
,
Besson
A
.
Cortactin function in invadopodia
.
Small GTPases
.
2017
Dec
;
•••
:
1
15
.
[PubMed]
2154-1248
37.
Tegtmeyer
N
,
Wittelsberger
R
,
Hartig
R
,
Wessler
S
,
Martinez-Quiles
N
,
Backert
S
.
Serine phosphorylation of cortactin controls focal adhesion kinase activity and cell scattering induced by Helicobacter pylori
.
Cell Host Microbe
.
2011
Jun
;
9
(
6
):
520
31
.
[PubMed]
1931-3128
38.
Racz
B
,
Weinberg
RJ
.
The subcellular organization of cortactin in hippocampus
.
J Neurosci
.
2004
Nov
;
24
(
46
):
10310
7
.
[PubMed]
0270-6474
39.
Uruno
T
,
Liu
J
,
Zhang
P
,
Fan Yx
,
Egile
C
,
Li
R
, et al
Activation of Arp2/3 complex-mediated actin polymerization by cortactin
.
Nat Cell Biol
.
2001
Mar
;
3
(
3
):
259
66
.
[PubMed]
1465-7392
40.
Narayanan
A
,
LeClaire
LL
 3rd
,
Barber
DL
,
Jacobson
MP
.
Phosphorylation of the Arp2 subunit relieves auto-inhibitory interactions for Arp2/3 complex activation
.
PLOS Comput Biol
.
2011
Nov
;
7
(
11
):
e1002226
.
[PubMed]
1553-734X
41.
LeClaire
LL
 3rd
,
Baumgartner
M
,
Iwasa
JH
,
Mullins
RD
,
Barber
DL
.
Phosphorylation of the Arp2/3 complex is necessary to nucleate actin filaments
.
J Cell Biol
.
2008
Aug
;
182
(
4
):
647
54
.
[PubMed]
0021-9525
42.
Wegner
AM
,
Nebhan
CA
,
Hu
L
,
Majumdar
D
,
Meier
KM
,
Weaver
AM
, et al
N-wasp and the arp2/3 complex are critical regulators of actin in the development of dendritic spines and synapses
.
J Biol Chem
.
2008
Jun
;
283
(
23
):
15912
20
.
[PubMed]
0021-9258
43.
Spillane
M
,
Ketschek
A
,
Jones
SL
,
Korobova
F
,
Marsick
B
,
Lanier
L
, et al
The actin nucleating Arp2/3 complex contributes to the formation of axonal filopodia and branches through the regulation of actin patch precursors to filopodia
.
Dev Neurobiol
.
2011
Sep
;
71
(
9
):
747
58
.
[PubMed]
1932-8451
44.
Rochefort
NL
,
Konnerth
A
.
Dendritic spines: from structure to in vivo function
.
EMBO Rep
.
2012
Aug
;
13
(
8
):
699
708
.
[PubMed]
1469-221X
45.
Duffau
H
.
Brain plasticity: from pathophysiological mechanisms to therapeutic applications
.
J Clin Neurosci
.
2006
Nov
;
13
(
9
):
885
97
.
[PubMed]
0967-5868
46.
Gipson
CD
,
Olive
MF
.
Structural and functional plasticity of dendritic spines - root or result of behavior?
Genes Brain Behav
.
2017
Jan
;
16
(
1
):
101
17
.
[PubMed]
1601-1848
47.
Bourne
J
,
Harris
KM
.
Do thin spines learn to be mushroom spines that remember?
Curr Opin Neurobiol
.
2007
Jun
;
17
(
3
):
381
6
.
[PubMed]
0959-4388
48.
Smith
CC
,
Vedder
LC
,
McMahon
LL
.
Estradiol and the relationship between dendritic spines, NR2B containing NMDA receptors, and the magnitude of long-term potentiation at hippocampal CA3-CA1 synapses
.
Psychoneuroendocrinology
.
2009
Dec
;
34
Suppl 1
:
S130
42
.
[PubMed]
0306-4530
49.
Lambrecht
C
,
Haesen
D
,
Sents
W
,
Ivanova
E
,
Janssens
V
.
Structure, regulation, and pharmacological modulation of PP2A phosphatases
.
Methods Mol Biol
.
2013
;
1053
:
283
305
.
[PubMed]
1064-3745
50.
Liu
R
,
Zhou
XW
,
Tanila
H
,
Bjorkdahl
C
,
Wang
JZ
,
Guan
ZZ
, et al
Phosphorylated PP2A (tyrosine 307) is associated with Alzheimer neurofibrillary pathology
.
J Cell Mol Med
.
2008
Jan-Feb
;
12
(
1
):
241
57
.
[PubMed]
1582-1838
51.
Li
D
,
Musante
V
,
Zhou
W
,
Picciotto
MR
,
Nairn
AC
.
Striatin-1 is a B subunit of protein phosphatase PP2A that regulates dendritic arborization and spine development in striatal neurons
.
J Biol Chem
.
2018
Jul
;
293
(
28
):
11179
94
.
[PubMed]
0021-9258
52.
Lin
L
,
Lo
LH
,
Lyu
Q
,
Lai
KO
.
Determination of dendritic spine morphology by the striatin scaffold protein STRN4 through interaction with the phosphatase PP2A
.
J Biol Chem
.
2017
Jun
;
292
(
23
):
9451
64
.
[PubMed]
0021-9258
53.
Liu
X
,
Huai
J
,
Endle
H
,
Schlüter
L
,
Fan
W
,
Li
Y
, et al
PRG-1 Regulates Synaptic Plasticity via Intracellular PP2A/β1-Integrin Signaling
.
Dev Cell
.
2016
Aug
;
38
(
3
):
275
90
.
[PubMed]
1534-5807
54.
Soderling
SH
,
Langeberg
LK
,
Soderling
JA
,
Davee
SM
,
Simerly
R
,
Raber
J
, et al
Loss of WAVE-1 causes sensorimotor retardation and reduced learning and memory in mice
.
Proc Natl Acad Sci USA
.
2003
Feb
;
100
(
4
):
1723
8
.
[PubMed]
0027-8424
55.
Bhambhvani
HP
,
Simmons
M
,
Haroutunian
V
,
Meador-Woodruff
JH
.
Decreased expression of cortactin in the schizophrenia brain
.
Neuroreport
.
2016
Feb
;
27
(
3
):
145
50
.
[PubMed]
0959-4965
56.
Kim
IH
,
Racz
B
,
Wang
H
,
Burianek
L
,
Weinberg
R
,
Yasuda
R
, et al
Disruption of Arp2/3 results in asymmetric structural plasticity of dendritic spines and progressive synaptic and behavioral abnormalities
.
J Neurosci
.
2013
Apr
;
33
(
14
):
6081
92
.
[PubMed]
0270-6474
Copyright / Drug Dosage / Disclaimer
Copyright: All rights reserved. No part of this publication may be translated into other languages, reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying, recording, microcopying, or by any information storage and retrieval system, without permission in writing from the publisher.
Drug Dosage: The authors and the publisher have exerted every effort to ensure that drug selection and dosage set forth in this text are in accord with current recommendations and practice at the time of publication. However, in view of ongoing research, changes in government regulations, and the constant flow of information relating to drug therapy and drug reactions, the reader is urged to check the package insert for each drug for any changes in indications and dosage and for added warnings and precautions. This is particularly important when the recommended agent is a new and/or infrequently employed drug.
Disclaimer: The statements, opinions and data contained in this publication are solely those of the individual authors and contributors and not of the publishers and the editor(s). The appearance of advertisements or/and product references in the publication is not a warranty, endorsement, or approval of the products or services advertised or of their effectiveness, quality or safety. The publisher and the editor(s) disclaim responsibility for any injury to persons or property resulting from any ideas, methods, instructions or products referred to in the content or advertisements.
You do not currently have access to this content.