TY - JOUR
T1 - Elucidating the functions of brain GSK3α
T2 - Possible synergy with GSK3β upregulation and reversal by antidepressant treatment in a mouse model of depressive-like behaviour
AU - Pavlov, Dmitrii
AU - Markova, Nataliia
AU - Bettendorff, Lucien
AU - Chekhonin, Vladimir
AU - Pomytkin, Igor
AU - Lioudyno, Viktoria
AU - Svistunov, Andrei
AU - Ponomarev, Eugene
AU - Lesch, Klaus Peter
AU - Strekalova, Tatyana
N1 - Publisher Copyright:
© 2017
PY - 2017/9/29
Y1 - 2017/9/29
N2 - Glycogen synthase kinase 3 (GSK3) has been linked to the mechanisms of stress, mood regulation, and the effects of antidepressants. The functions of the GSK3β isoform have been extensively investigated, but little is known about the α-isoform, although they may functionally related. In a recently established modified swim test with a third delayed swim exposure, brain GSK3β mRNA expression positively correlated with floating behaviour on the third test. A two-week-long pretreatment regime with imipramine (7.5 mg/kg/day) or thiamine (200 mg/kg/day), which is known to have antidepressant properties, reduced the GSK3β over-expression and decreased floating behaviour on Day 5. GSK3α mRNA levels were measured in the hippocampus and prefrontal cortex on Days 1, 2 and 5. GSK3α expression was decreased in the prefrontal cortex on Day 2 and increased on Day 5. In this model, GSK3α mRNA changes were prevented by imipramine or thiamine treatment. There was a significant correlation between the expression of the two isoforms in the prefrontal cortex on Day 2 in untreated group. These results provide the first evidence for the potential involvement of GSK3α in depressive-like behaviours and as a target of anti-depressant therapy. Furthermore, the correlations suggest some cross-talk may exist between the two GSK3 isoforms.
AB - Glycogen synthase kinase 3 (GSK3) has been linked to the mechanisms of stress, mood regulation, and the effects of antidepressants. The functions of the GSK3β isoform have been extensively investigated, but little is known about the α-isoform, although they may functionally related. In a recently established modified swim test with a third delayed swim exposure, brain GSK3β mRNA expression positively correlated with floating behaviour on the third test. A two-week-long pretreatment regime with imipramine (7.5 mg/kg/day) or thiamine (200 mg/kg/day), which is known to have antidepressant properties, reduced the GSK3β over-expression and decreased floating behaviour on Day 5. GSK3α mRNA levels were measured in the hippocampus and prefrontal cortex on Days 1, 2 and 5. GSK3α expression was decreased in the prefrontal cortex on Day 2 and increased on Day 5. In this model, GSK3α mRNA changes were prevented by imipramine or thiamine treatment. There was a significant correlation between the expression of the two isoforms in the prefrontal cortex on Day 2 in untreated group. These results provide the first evidence for the potential involvement of GSK3α in depressive-like behaviours and as a target of anti-depressant therapy. Furthermore, the correlations suggest some cross-talk may exist between the two GSK3 isoforms.
KW - Depression
KW - GSK3α
KW - Imipramine
KW - Mice
KW - Prefrontal cortex
KW - Thiamine
UR - https://www.scopus.com/pages/publications/85027500742
U2 - 10.1016/j.bbr.2017.08.018
DO - 10.1016/j.bbr.2017.08.018
M3 - Article
C2 - 28803855
AN - SCOPUS:85027500742
SN - 0166-4328
VL - 335
SP - 122
EP - 127
JO - Behavioural Brain Research
JF - Behavioural Brain Research
ER -