GAREEV, I.F.,
BEILERLI, O.A.,
ALIEV, G.M.,
PAVLOV, VALENTIN,
IZMAILOV, ADEL,
ZHANG, YIWEI,
LIANG, YANCHAO,
YANG, GUANG (2020) , translation, cell differentiation, regulation of
gene expression, and regulation of the cell cycle. In recent
Gareev, Ilgiz,
Beylerli, Ozal,
Yang, Guang,
Izmailov, Adel,
Shi, Huaizhang,
Sun, Jinxian,
Zhao, Boxian,
Liu, Binbing,
Zhao, Shiguang (2021) -22 nucleotides that regulate
gene expression at the post-transcriptional level through interaction with 3
Gareev, I,
Gileva, Y,
Dzidzaria, A,
Beylerli, O,
Pavlov, V,
Agaverdiev, M,
Mazorov, B,
Biganyakov, I,
Vardikyan, A,
Jin, M,
Ahmad, A (2021) For several decades, research in tumor biology has focused on the involvement of
genes encoding a
Beylerli, Ozal,
Ju, Jiaming,
Beilerli, Aferin,
Gareev, Ilgiz,
Shumadalova, Alina,
Ilyasova, Tatiana,
Bai, Yunlong,
Yang, Baofeng (2023) regulate
gene expression at multiple levels. Increasing evidence suggests that lncRNAs participate in many
Timasheva, Yanina,
Balkhiyarova, Zhanna,
Avzaletdinova, Diana,
Morugova, Tatyana,
Korytina, Gulnaz F.,
Nouwen, Arie,
Prokopenko, Inga,
Kochetova, Olga (2024) , HTR3A, and AKT1
genes. MR results demonstrated an inverse causal relationship between external eating
Li, Shenglin,
Khoso, Muneer Ahmed,
Xu, He,
Zhang, Chao,
Liu, Ziyang,
Wagan, Sindho,
Dinislam, Khuzin,
Liu, Lijie (2024) one stress at a time. Through a complex
gene network, transcription factors (TFs) such as WRKY TFs
a combination of prototype M1 and M2
genes. Our review focuses on novel mechanisms involved