Search Results - "Lei, Zhaoxiong"
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1
SGK1 promotes the lipid accumulation via regulating the transcriptional activity of FOXO1 in bovine
Published in BMC genomics (30-07-2024)“…Serum/glucocorticoid-inducible kinase 1 (SGK1) gene encodes a serine/threonine protein kinase that plays an essential role in cellular stress response and…”
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2
Genome-wide identification and expression profiling analysis of Wnt family genes affecting adipocyte differentiation in cattle
Published in Scientific reports (11-01-2022)“…The Wnt family features conserved glycoproteins that play roles in tissue regeneration, animal development and cell proliferation and differentiation. For its…”
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3
Genome-wide identification of cyclin-dependent kinase (CDK) genes affecting adipocyte differentiation in cattle
Published in BMC genomics (12-07-2021)“…Cyclin-dependent kinases (CDKs) are protein kinases regulating important cellular processes such as cell cycle and transcription. Many CDK genes also play a…”
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4
ncRNAs regulate bovine adipose tissue deposition
Published in Molecular and cellular biochemistry (01-07-2021)“…Lipid metabolism, which encompasses synthesis and degradation of lipids, is critical for a wide range of cellular functions, including structural and…”
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5
Bta‐miR‐6517 promotes proliferation and inhibits differentiation of pre‐adipocytes by targeting PFKL
Published in Journal of animal physiology and animal nutrition (01-11-2022)“…The proliferation and differentiation of pre‐adipocytes are regulated by microRNAs (miRNAs) and other factors. In this study, the potential functions of…”
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6
miR-302b promotes bovine preadipocyte differentiation and inhibits proliferation by targeting CDK2
Published in Animal biotechnology (01-11-2023)“…MicroRNAs have been recently reported to act as key regulators of adipogenesis, a multifactorial complex process. One miRNA, miR-302b, is an important…”
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Circular RNA regulation of fat deposition and muscle development in cattle
Published in Veterinary medicine and science (01-09-2022)“…Circular RNAs (circRNAs) are important transcriptional regulatory RNA molecule that can regulate the transcription of downstream genes by competitive binding…”
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8
Identification of Key Genes Associated With Early Calf-Hood Nutrition in Subcutaneous and Visceral Adipose Tissues by Co-Expression Analysis
Published in Frontiers in veterinary science (10-05-2022)“…Substantive evidence has confirmed that nutrition state is associated with health risk and the onset of pubertal and metabolic profile. Due to heterogeneity,…”
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9
Weighted Gene Co-Expression Network Analysis Identifies Key Modules and Central Genes Associated With Bovine Subcutaneous Adipose Tissue
Published in Frontiers in veterinary science (22-06-2022)“…BackgroundFat deposition is an important economic trait in livestock and poultry production. However, the relationship between various genes and signal…”
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10
Tissue Expression Analysis, Cloning, and Characterization of the 5′-Regulatory Region of the Bovine LATS1 Gene
Published in Frontiers in veterinary science (26-05-2022)“…As a member of the large tumor suppressor ( LATS ) gene family, LATS 1 plays an important role in regulating muscle growth and development. In this study, we…”
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11
Identification of key genes and functional enrichment pathways involved in fat deposition in Xinyang buffalo by WGCNA
Published in Gene (15-04-2022)“…•The six genes, FH, MECR, GPI, PANK3, ATP6V1A, PHYH, were identified and validated as the marker genes for fat deposition.•Identifying some amino acids closely…”
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12
miR-302b promotes bovine preadipocyte differentiation and inhibits proliferation by targeting CDK 2
Published in Animal biotechnology (01-11-2023)“…MicroRNAs have been recently reported to act as key regulators of adipogenesis, a multifactorial complex process. One miRNA, miR-302b, is an important…”
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13
Tissue Expression Analysis, Cloning, and Characterization of the 5'-Regulatory Region of the Bovine LATS 1 Gene
Published in Frontiers in veterinary science (2022)“…As a member of the large tumor suppressor ( ) gene family, 1 plays an important role in regulating muscle growth and development. In this study, we determined…”
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