ЭПИГЕНЕТИКА АГРЕССИВНОГО ПОВЕДЕНИЯMUSTAFIN, R.N.,
KHUSNUTDINOVA, E.K.,
KAZANTSEVA, A.V.,
ENIKEEVA, R.F.,
DAVYDOVA, Y.D.,
KARUNAS, A.S.,
MALYKH, S.B.,
МУСТАФИН Р. Н.,
КАЗАНЦЕВА А.В.,
ЕНИКЕЕВА Р.Ф.,
ДАВЫДОВА Ю.Д.,
КАРУНАС А.С.,
МАЛЫХ С.Б.,
ХУСНУТДИНОВА Э.К. (2019) -lasting effect, represent the
key factors causing the manifestation of aggressive behavior. The role of stressful
Xu, Dongxiao,
Gareev, Ilgiz,
Beylerli, Ozal,
Pavlov, Valentin,
Le, Huang,
Shi, Huaizhang (2024) -miR-342-3p, and hsa-miR-532-5p) and 50
key genes (such as ATP6V1G1, KBTBD6, VIM, PA2G4, DYNLL1, METTL21A
contained
key 27 mRNAs (from C-C motif chemokine ligand 5 (CCL5), C-C motif chemokine ligand 8 (CCL8
Zhao, X.,
Sun, J.,
Su, W.,
Shan, H.,
Zhang, B.,
Wang, Y.,
Shabanova, A.,
Shan, H.,
Liang, H. (2018) cytoplasm to nucleus, a
key downstream effector of the Hippo pathway, in vivo and in vitro by interacting
Microglia-mediated central nervous system (CNS) inflammation is one of the
key features of various
YANG, G.,
SUN, J.,
SHI, H.,
ZHAO, S.,
GAREEV, I.,
BEYLERLI, O.,
PAVLOV, V.,
IZMAILOV, A. (2020) biological processes, including cell proliferation, apoptosis, and cell differentiation, but also play a
key and the
key role of transposons in the regulation of gene expression during ontogenesis. The silencing
Dzhemileva, L.U.,
D'yakonov, V.A.,
Makarov, A.A.,
Andreev, E.N.,
Yunusbaeva, M.M.,
Dzhemilev, U.M. (2017) alcohol, lembehyne B. The
key stage of the process uses new cross-cyclomagnesiation reaction of aliphatic
that was influenced by both scientific discoveries and the very order of civilization development as a whole. The
key