transposable elements are key evolutionary sources of long
non-coding RNAs, circular
RNAs, micro
RNAs, proteins
advances in molecular biology have identified
non-coding RNAs (nc
RNAs), including micro
RNAs (mi
RNAsGilyazova, Irina,
Gimalova, Galiya,
Nizamova, Aigul,
Nizamova, Aigul,
Ishbulatova, Ekaterina,
Pavlov, Valentin,
Khusnutdinova, Elza (2024) by sequences that do not code for proteins, much attention has been paid to
non-coding RNAs (nc
RNAsBeylerli, Ozal,
Beilerli, Aferin,
Ilyasova, Tatiana,
Shumadalova, Alina,
Shi, Huaizhang,
Sufianov, Albert (2024) Circular
RNAs (circ
RNAs) is a fascinating covalently closed circular
non-coding RNA
RNAs (t
RNAs) on their processing to form small
non-coding RNAs. This is evidenced by the use of t
Beylerli, Ozal,
Shi, Huaizhang,
Begliarzade, Sema,
Shumadalova, Alina,
Ilyasova, Tatiana,
Sufianov, Albert (2024) methods frequently fall short, underscoring the imperative for non-invasive alternatives.
Non-coding RNAsJiang, Jianhao,
Gareev, Ilgiz,
Ilyasova, Tatiana,
Shumadalova, Alina,
Du, Weijie,
Yang, Baofeng (2024) comprehension of the functioning of proteins, DNA, and the extensive array of coding and
noncoding RNAs but also
-coding genes and micro
RNAs involved in brain functioning. The Arc gene, derived from retroelements
with circular
RNAs (miR-495,-576,-579,-630,-633,-637,-942) and long
non-coding RNAs (miR-326
endogenous
non-coding RNAs orchestrating post-transcriptional gene expression, have garnered substantial