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) modifications and methylation of certain genomic loci. Transposable elements represent the key sources of
sites KLIMENTOVA, E.A.,
GILYAZOVA, I.R.,
BERMISHEVA, M.A.,
BLINNIKOVA, A. M.,
SAFIULLIN, R.I.,
IZMAILOV, A.A.,
YANG, B.,
PAVLOV ., V.N,
KHUSNUTDINOVA, E.K. (2020) binding site with the risk of developing clear cell renal cell carcinoma (ccRCC). As a result
Gilyazova, I.,
Ivanova, E.,
Gilyazova, G.,
Sultanov, I.,
Izmailov, A.,
Safullin, R.,
Pavlov, V.,
Khusnutdinova, E. (2021) , such as that observed in malignant tumors. We hypothesized that
microRNA genes methylation may be associated with renal
was conducted for data on changes in the expression of specific
microRNAs derived from transposons during aging
Ivanova, E.,
Gilyazova, I.,
Pavlov, V.,
Izmailov, A.,
Gimalova, G.,
Karunas, A.,
Prokopenko, I.,
Khusnutdinova, E. (2022) is responsible for the
microRNA biogenesis machinery. Here, we defined the biological-pathway-specific PGS in a
Galimova, E.F.,
Gromenko, I.D.,
Gilyazova, I.R.,
Gromenko, D.D.,
Galimov, K.Sh.,
Abdeeva, G.R.,
Gromenko, Yu.Yu.,
Khusnutdinova, E.K.,
Galimov, Sh.N. (2024) (n = 19). The isolation of exosomal
microRNA from ejaculate was performed using the exoRNeasy Midi