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Weini Li

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Articles 20
Citations 92
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Recent Articles
1.
Cai Q, Wang Z, Xiao Y, Zhang C, Yang Y, Kong F, et al.
Insect Sci . 2025 Feb; PMID: 39964140
The Drosophila melanogaster (fruit fly) misexpression suppressor of Ras 4 (MESR4) gene encodes a potential transcription factor and plays critical roles in various biological processes, including embryonic development, lipid metabolism,...
2.
Zhao H, Cao N, Liu Q, Zhang Y, Jin R, Lai H, et al.
J Transl Med . 2024 Nov; 22(1):1080. PMID: 39609696
Background: Excessive oxidative stress is known to cause endothelial dysfunction and drive cardiovascular diseases (CVD). While telomerase reverse transcriptase (TERT) shows protective effects against oxidative stress in rodents and is...
3.
Li S, Li W, Malhi N, Huang J, Li Q, Zhou Z, et al.
Molecules . 2024 Nov; 29(22). PMID: 39598860
Cannabigerol (CBG), a non-psychoactive cannabinoid found in cannabis, has emerged as a promising therapeutic agent with a diverse range of potential applications. Unlike its well-known counterpart tetrahydrocannabinol (THC), CBG does...
4.
Dai W, Han B, Sun Y, Hou P, Wang C, Li W, et al.
Int J Mol Sci . 2024 Nov; 25(21). PMID: 39518929
Although low-protein diets can improve the nitrogen utilization efficiency and alleviate economic pressures in ruminants, they may also negatively impact dairy performance. Rumen-protected lysine (RPL) supplementation can improve the health...
5.
Peng J, Li S, Huang J, Meng Q, Wang L, Xin W, et al.
J Org Chem . 2023 Nov; 88(23):16581-16588. PMID: 37976463
An iron-catalyzed efficient C-H amination for the construction of imidazole-fused-ring systems was developed under aerobic conditions. Compared to previous studies, this work exhibited green features. The reaction was conducted in...
6.
Xu S, Wu S, Zhang M, Xie J, Lin M, Jin L, et al.
Blood Adv . 2023 Nov; 8(2):309-323. PMID: 37967356
Ca2+/calmodulin-dependent protein kinase II γ (CAMKIIγ) has been identified as a potential target for treating cancer. Based on our previous study of berbamine (BBM) as a CAMKIIγ inhibitor, we have...
7.
Xiong X, Kiperman T, Li W, Fang Z, Agua A, Huang W, et al.
bioRxiv . 2023 Oct; PMID: 37873324
Background: The circadian clock exerts temporal control of metabolic pathways to maintain homeostasis, and its disruption leads to the development of obesity and insulin resistance. In adipose tissue, key regulators...
8.
Li W, Xiong X, Kiperman T, Ma K
Mol Cell Biol . 2023 Sep; 43(10):500-514. PMID: 37724597
The circadian clock is driven by a transcriptional-translational feedback loop, and cryptochrome 2 (CRY2) represses CLOCK/BMAL1-induced transcription activation. Despite the established role of clock in adipogenic regulation, whether the CRY2...
9.
Kiperman T, Li W, Xiong X, Li H, Horne D, Ma K
Stem Cell Res Ther . 2023 Jul; 14(1):190. PMID: 37525228
Background: The circadian clock is an evolutionarily conserved mechanism that exerts pervasive temporal control in stem cell behavior. This time-keeping machinery is required for orchestrating myogenic progenitor properties in regenerative...
10.
Xiong X, Kiperman T, Li W, Dhawan S, Lee J, Yechoor V, et al.
Endocrinology . 2023 Jun; 164(8). PMID: 37327385
The circadian clock machinery exerts transcriptional control to modulate adipogenesis and its disruption leads to the development of obesity. Here, we report that Nobiletin, a circadian clock amplitude-enhancing molecule, displays...