Jiyao Liu
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Explore the profile of Jiyao Liu including associated specialties, affiliations and a list of published articles.
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15
Citations
44
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Recent Articles
1.
Zheng Y, Zheng Y, Chen H, Tan X, Zhang G, Kong M, et al.
Phytomedicine
. 2025 Feb;
139:156465.
PMID: 39938177
Background: Colorectal cancer (CRC) continues to represent a significant global public health challenge. Ferroptosis, a novel form of cell death dependent on iron and involving lipid peroxidation, has emerged as...
2.
Liu J, He L, Chen H, Jiang D
Front Neurorobot
. 2025 Jan;
18():1481746.
PMID: 39840233
Significant strides have been made in emotion recognition from Electroencephalography (EEG) signals. However, effectively modeling the diverse spatial, spectral, and temporal features of multi-channel brain signals remains a challenge. This...
3.
Liu J, Qian Y, Zhao H, Liu Y, Qin Z, Zhang Z, et al.
J Org Chem
. 2024 Oct;
89(21):15914-15923.
PMID: 39440833
A novel selenized reaction of -arylbicyclo [1.1.0]butane-1-carboxamides with diselenide for the synthesis of polycyclic indoline derivatives is developed under electrochemical conditions. The synthesis is achieved by the bicyclo[1.1.0]butane strain-release reaction...
4.
Liu J, Zhao T, Zheng C, Ma L, Song F, Tian L, et al.
RNA Biol
. 2024 Sep;
21(1):29-45.
PMID: 39256954
Adar-mediated adenosine-to-inosine (A-to-I) mRNA editing is a conserved mechanism that exerts diverse regulatory functions during the development, evolution, and adaptation of metazoans. The accurate detection of RNA editing sites helps...
5.
Zheng C, Liu J, Duan Y
BMC Genomics
. 2024 Aug;
25(1):803.
PMID: 39187830
Background: Adenosine-to-inosine (A-to-I) RNA editing is a co-/post-transcriptional modification introducing A-to-G variations in RNAs. There is extensive discussion on whether the flexibility of RNA editing exerts a proteomic diversification role,...
6.
Ma L, Zheng C, Liu J, Song F, Tian L, Cai W, et al.
J Mol Evol
. 2024 Jul;
92(4):488-504.
PMID: 39012510
Adenosine-to-inosine (A-to-I) RNA editing recodes the genetic information. Apart from diversifying the proteome, another tempting advantage of RNA recoding is to correct deleterious DNA mutation and restore ancestral allele. Solid...
7.
Duan Y, Ma L, Zhao T, Liu J, Zheng C, Song F, et al.
Fly (Austin)
. 2024 Jun;
18(1):2367359.
PMID: 38889318
Adenosine-to-inosine (A-to-I) RNA editing recodes the genome and confers flexibility for the organisms to adapt to the environment. It is believed that RNA recoding sites are well suited for facilitating...
8.
Liu J, Zheng C, Duan Y
Mol Genet Genomics
. 2024 Apr;
299(1):46.
PMID: 38642133
Adenosine-to-inosine (A-to-I) RNA editing, resembling A-to-G mutation, confers adaptiveness by increasing proteomic diversity in a temporal-spatial manner. This evolutionary theory named "proteomic diversifying hypothesis" has only partially been tested in...
9.
Li Z, Liu J, Chen Y, Liang A, He W, Qin X, et al.
Plants (Basel)
. 2024 Apr;
13(6).
PMID: 38592885
The characterization of the PYL/RCAR ABA receptors in a great deal of plant species has dramatically advanced the study of ABA functions involved in key physiological processes. However, the genes...
10.
Duan Y, Ma L, Liu J, Liu X, Song F, Tian L, et al.
Cell Mol Life Sci
. 2024 Mar;
81(1):136.
PMID: 38478033
Background: Metazoan adenosine-to-inosine (A-to-I) RNA editing resembles A-to-G mutation and increases proteomic diversity in a temporal-spatial manner, allowing organisms adapting to changeable environment. The RNA editomes in many major animal...