ЭПИГЕНЕТИЧЕСКИЕ МЕХАНИЗМЫ ПАТОГЕНЕЗА РАССЕЯННОГО СКЛЕРОЗАVAKHITOV, V.A.,
KUZMINA, U.S.,
ZAINULLINA, L.F.,
MAKSIMOVA, M.A.,
ZILEEVA, Z.R.,
VAKHITOVA, Y.V.,
BAKHTIYAROVA, K.Z.,
ВАХИТОВ В.А.,
КУЗЬМИНА У.Ш.,
БАХТИЯРОВА К.З.,
ЗАЙНУЛЛИНА Л.Ф.,
МАКСИМОВА М.А.,
ЗИЛЕЕВА З.Р.,
ВАХИТОВА Ю.В. (2020) mechanisms regulating gene expression, such as
DNA methylation, histone acetylation, and microRNAs, play
BAYMIEV, A.K.,
KULUEV, B.R.,
SHVETS, K.Y.,
YAMIDANOV, R.S.,
MATNIYAZOV, R.T.,
CHEMERIS, D.A.,
IVANENKOV, Y.A.,
CHEMERIS, A.V.,
ZUBOV, V.V.,
ALEKSEEV, Y.I.,
MAVZYUTOV, A.R. (2020) not differentiate between live bacteria and dead or dormant ones, and are also capable of amplifying
DNANIKITIN, A.G.,
CHUDAKOVA, D.A.,
ENIKEEV, R.F.,
GORDIEV, M.G.,
SAKAEVA, D.,
DRUZHKOV, M.,
SHIGAPOVA, L.H.,
BROVKINA, O.I.,
SHAGIMARDANOVA, E.I.,
GUSEV, O.A. (2020) many causes including defects in
DNA repair systems. Previously, it has been shown that germline
. This is due to the ability of ribozymes and peptides to interact with specific sequences of
DNA nucleotides
GILYAZOVA, I.R.,
KLIMENTOVA, E.A.,
BERMISHEVA, M.A.,
KHUSNUTDINOVA, E.K.,
IZMAILOV, A.A.,
GALIMOVA, E.F.,
SAFIULLIN, R.I.,
GALIMOV, S.N.,
V.N. Pavlov,
BULYGIN, K.V. (2020) was performed on 23 paired
DNA samples extracted from kidney tumour tissue and the surrounding normal renal