their possible applications in
gene therapy and as targets for novel treatment modalities. © 2023 The Authors
., through
gene repression. A growing number of studies have demonstrated miRNAs deregulation in various
Shnayder, Natalia A.,
Ashhotov, Azamat V.,
Trefilova, Vera V.,
Novitsky, Maxim A.,
Medvedev, German V.,
Petrova, Marina M.,
Narodova, Ekaterina A.,
Kaskaeva, Daria S.,
Chumakova, Galina A.,
Garganeeva, Natalia P.,
Lareva, Natalia V.,
Al-Zamil, Mustafa,
Asadullin, Azat R.,
Nasyrova, Regina F. (2023) engineering); genetic technologies (
gene modifications, microRNA, and molecular inducers of IDD); technologies
Beylerli, Ozal,
Tamrazov, Rasim,
Gareev, Ilgiz,
Ilyasova, Tatiana,
Shumadalova, Alina,
Bai, Yunlong,
Yang, Baofeng (2023) to distant sites, where they can modulate
gene expression and cell signaling pathways. They have been shown
RNAs influence various cellular processes, such as
gene expression, vascular tone, and inflammation, making them
and noncoding nucleic acids, may be of particular interest as biomarkers of diseases. The vast majority of
gene biological processes through negative control over
gene expression at the post-transcriptional level. Mi
Qian, J.,
Zhuang, F.,
Chen, Y.,
Fan, X.,
Wang, J.,
Wang, Z.,
Wang, Y.,
Xu, M.,
Samorodov, A.V.,
Pavlov, V.N.,
Liang, G. (2022) -sequencing assay.
Gene set enrichment analysis of the RNA-seq data indicated that MD2 knockout was associated
Mukhametov, U.,
Lyulin, S.,
Borzunov, D.,
Sufianova, G.,
Shumadalova, A.,
Zhang, D.,
Gareev, I. (2022) involved in the regulation of a large number of target
genes responsible for the life of the cell, mi