

Acta Veterinaria et Zootechnica Sinica ›› 2025, Vol. 56 ›› Issue (10): 4914-4924.doi: 10.11843/j.issn.0366-6964.2025.10.013
• Animal Genetics and Breeding • Previous Articles Next Articles
SONG Xiangyi1(
), CAO Hang1, LIU Wujun1,*(
), JIANG Lin2,*(
)
Received:2025-03-04
Online:2025-10-23
Published:2025-11-01
Contact:
LIU Wujun, JIANG Lin
E-mail:1799322141@qq.com;lwj_ws@163.com;jianglin@caas.cn
CLC Number:
SONG Xiangyi, CAO Hang, LIU Wujun, JIANG Lin. miR-376c-5p Regulates Lipid Accumulation in Preadipocytes by Targeting PIK3CA[J]. Acta Veterinaria et Zootechnica Sinica, 2025, 56(10): 4914-4924.
Table 1
qPCR primers information"
| 基因Gene | 序列(5′→3′)Sequence |
| miR-376c-5p | RT:GTCGTATCCAGTGCAGGGTCCGAGGTATTCGCACTGGATACGACAAACAT |
| F:CGCGGTGGATATTCCGTCT | |
| R:AGTGCAGGGTCCGAGGTATT | |
| PIK3CA | F:CACCTGAACAGACAAGTAGAGGC |
| R:GCAAAGCATCCATGAAGTCTGGC | |
| PPARγ | F:CGGAAGCCCTTTGGTGACTT |
| R:CCTCGATGGGCTTCACGTTC | |
| ACACA | F:CCGCCAGCCTGAGTTCTTTT |
| R:ATCGGGAGTGCTGGTTTAGC | |
| FASN | F:GGGTCTATGCCACGATTC |
| R:GTGTCCCATGTTGGATTTG | |
| ADIPOQ | F:GGCAGGAAAGGAGAACCTGG |
| R:AGCCTTGTCCTTCTTGAAGAG | |
| U6 | F:TCGCTTCGGCAGCACATA |
| R:TTTGCGTGTCATCCTTGC | |
| 18S | F:GTAACCCGTTGAACCCCATT |
| R:CCATCCAATCGGTAGTAGCG |
Table 2
Conservative analysis of miRNA sequence"
| 物种 Species | 名称 Name | 登录号 Accession number | 引物长度/nt Length | 序列(5′→3′) Sequence |
| 绵羊Sheep | oar-miR-376c-5p | MIMAT0019279 | 21 | GUGGAUAUUCCGUCUAUGUUU |
| 小鼠Mouse | mmu-miR-376c-5p | MIMAT0005295 | 22 | GUGGAUAUUCCUUCUAUGUUUA |
| 大鼠Rat | rno-miR-376c-5p | MIMAT0017219 | 21 | GUGGAUAUUCCUUCUAUGUUU |
| 人Human | hsa-miR-376c-5p | MIMAT0022861 | 21 | GGUGGAUAUUCCUUCUAUGUU |
| 猕猴Macaca mulatta | mml-miR-376c-5p | MIMAT0026863 | 22 | GUGGAUAUUCCUUCUAUGUUUA |
Fig. 2
The expression levels of adipogenic marker genes after overexpression of miR-376c-5p A. Relative expression level of PPARγ after 8 days of differentiation induced by overexpression of miR-376c-5p;B. Relative expression level of ADIPOQ after 8 days of differentiation induced by overexpression of miR-376c-5p;C. Relative expression level of ACACA following differentiation induced by miR-376c-5p overexpression; D. Relative expression level of FASN following differentiation induced by miR-376c-5p overexpression; E. Oil Red O staining results (100×); F. Bodipy staining results (100×)"
| 1 | 黄红涛, 冯若楠, 夏天宇, 等. 脂肪对肉品质的影响[J]. 畜牧兽医杂志, 2018, 37 (1): 59- 60. |
| HUANG H T , FENG R N , XIA T Y , et al. Influence of fat on meat quality[J]. Journal of Animal Science and Veterinary Medicine, 2018, 37 (1): 59- 60. | |
| 2 | 李银, 韦洋洋, 蒋钦杨, 等. 动物肌内脂肪沉积的影响因素及其分子机制[J]. 动物营养学报, 2024, 36 (3): 1502- 1514. |
| LI Y , WEI Y Y , JIANG Q Y , et al. Influencing factors and molecular mechanisms of intramuscular fat deposition in animals[J]. Chinese Journal of Animal Nutrition, 2024, 36 (3): 1502- 1514. | |
| 3 |
KNAPIK J , ROPKA-MOLIK K , PIESZKA M . Genetic and nutritional factors determining the production and quality of sheep meat—a review[J]. Ann Anim Sci, 2017, 17 (1): 23- 36.
doi: 10.1515/aoas-2016-0036 |
| 4 |
WANG J , ZHANG X , WANG X , et al. Polymorphism and expression of the HMGA1 gene and association with tail fat deposition in Hu sheep[J]. Anim Biotechnol, 2023, 34 (4): 1626- 1634.
doi: 10.1080/10495398.2021.1998093 |
| 5 | 张越, 曹贵方. 绵羊尾脂沉积的研究进展[J]. 当代畜禽养殖业, 2022 (4): 16- 18. |
| ZHANG Y , CAO G F . Research progress of tail fat deposition in sheep[J]. Modern Animal Husbandry, 2022 (4): 16- 18. | |
| 6 |
SU X H , HE H Y , FANG C , et al. Transcriptome profiling of LncRNAs in sheep tail fat deposition[J]. Anim Biotechnol, 2023, 34 (4): 900- 910.
doi: 10.1080/10495398.2021.2002882 |
| 7 |
YUAN Z , LIU E , LIU Z , et al. Selection signature analysis reveals genes associated withtail type in Chinese indigenous sheep[J]. Anim Genet, 2017, 48 (1): 55- 66.
doi: 10.1111/age.12477 |
| 8 |
ZHANG W , XU M , WANG J , et al. Comparative transcriptome analysis of key genes and pathways activated in response to fat deposition in two sheep breeds with distinct tail phenotype[J]. Front Genet, 2021, 12, 639030.
doi: 10.3389/fgene.2021.639030 |
| 9 | 赵奎, 庞全海. MicroRNA研究进展[J]. 生物技术通报, 2010 (12): 7- 11. |
| ZHAO K , PANG Q H . Research progress of MicroRNA[J]. Biotechnology Bulletin, 2010 (12): 7- 11. | |
| 10 |
MA Y S , YU F , ZHONG X M , et al. miR-30 family reduction maintains self-renewal andpromotes tumorigenesis in NSCLC-initiating cells by targeting oncogene TM4SF1[J]. Mol Ther, 2018, 26 (12): 2751- 2765.
doi: 10.1016/j.ymthe.2018.09.006 |
| 11 |
ZHANG B . MicroRNA: a new target for improving plant tolerance to abiotic stress[J]. J Exp Bot, 2015, 66 (7): 1749- 1761.
doi: 10.1093/jxb/erv013 |
| 12 |
冉宏标, 王会, 柴志欣, 等. miR-138靶向PGC-1α调控牦牛肌内前体脂肪细胞增殖及分化[J]. 畜牧兽医学报, 2022, 53 (10): 3434- 3447.
doi: 10.11843/j.issn.0366-6964.2022.10.016 |
|
RAN H B , WANG H , CHAI Z X , et al. miR-138 regulates proliferation and differentiation of intramuscular preadipocyte by targeting PGC-1α in yak[J]. Acta Veterinaria et Zootechnica Sinica, 2022, 53 (10): 3434- 3447.
doi: 10.11843/j.issn.0366-6964.2022.10.016 |
|
| 13 |
张寒月, 赵丹, 梁煜, 等. miR-150靶向AOC3调控绵羊前体脂肪细胞分化的研究[J]. 畜牧兽医学报, 2023, 54 (8): 3262- 3274.
doi: 10.11843/j.issn.0366-6964.2023.08.013 |
|
ZHANG H Y , ZHAO D , LIANG Y , et al. miR-150 Regulates Ovine Preadipocyte Differentiation by Targeting AOC3[J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54 (8): 3262- 3274.
doi: 10.11843/j.issn.0366-6964.2023.08.013 |
|
| 14 | 徐小春. 绵羊尾部脂肪代谢相关调控基因的作用研究[D]. 杨凌: 西北农林科技大学, 2015. |
| XU X C. Study on the role of regulatory genes related to tail fat metabolism in sheep[D]. Yangling: Northwest A&F University, 2015. (in Chinese) | |
| 15 |
FERNYHOUGH M E , VIERCK J L , HAUSMAN G J , et al. Primary adipocyte culture: adipocyte purification methods may lead to a new understanding of adipose tissue growth and development[J]. Cytotechnology, 2004, 46, 163- 172.
doi: 10.1007/s10616-005-2602-0 |
| 16 |
DANI C , SMITH A G , DESSOLIN S , et al. Differentiation of embryonic stem cells into adipocytes in vitro[J]. J Cell Sci, 1997, 110 (11): 1279- 1285.
doi: 10.1242/jcs.110.11.1279 |
| 17 |
PITTENGER M F , MACKAY A M , BECK S C , et al. Multilineage potential of adult human-mesenchymal stem cells[J]. Science, 1999, 284 (5411): 143- 147.
doi: 10.1126/science.284.5411.143 |
| 18 |
LI H , CHEN X , GUAN L , et al. MiRNA-181a regulates adipogenesis by targeting tumornecrosis factor-α (TNF-α) in the porcine model[J]. PloS One, 2013, 8 (10): e71568.
doi: 10.1371/journal.pone.0071568 |
| 19 | 费晓娟, 金美林, 李桃桃, 等. miR-61与PIK3R5在绵羊尾部脂肪中的表达及其靶向关系验证[J]. 中国畜牧杂志, 2022, 58 (7): 148- 155. |
| FEI X J , JIN M L , LI T T , et al. Expression of miR-61 and PIK3R5 in sheep tail fat and verification of their targeting relationship[J]. Chinese Journal of Animal Science, 2022, 58 (7): 148- 155. | |
| 20 | ZHOU G , JIANG H , MA L . MicroRNA-376a inhibits cell proliferation and invasion in osteosarcoma via directly targeting SATB1[J]. Mol Med Rep, 2018, 18 (3): 3521- 3528. |
| 21 | YAO S , LIU Y , YAO Z , et al. MicroRNA-376a regulates cell proliferation and apoptosis by targeting forkhead box protein P2 in lymphoma[J]. Oncol Lett, 2018, 16 (3): 3169- 3176. |
| 22 |
MO Z H , WU X D , LI S , et al. Expression and clinical significance of microRNA-376a in colorectal cancer[J]. Asian Pac J Cancer Prev, 2014, 15 (21): 9523- 9527.
doi: 10.7314/APJCP.2014.15.21.9523 |
| 23 | LI Y , WU Y , SUN Z , et al. MicroRNA-376a inhibits cell proliferation and invasion in glioblastoma multiforme by directly targeting specificity protein 1[J]. Mol Med Rep, 2018, 17 (1): 1583- 1590. |
| 24 |
CARRER M , LIU N , GRUETER C E , et al. Control of mitochondrial metabolism and systemic energy homeostasis by microRNAs 378 and 378[J]. PANS, 2012, 109 (38): 15330- 15335.
doi: 10.1073/pnas.1207605109 |
| 25 |
XU S , CHEN P , SUN L . Regulatory networks of non-coding RNAs in brown/beige adipogenesis[J]. Biosci Rep, 2015, 35 (5): e00262.
doi: 10.1042/BSR20150155 |
| 26 |
KANG Z , ZHANG S , JIANG E , et al. circFLT1 and lncCCPG1 sponges miR-93 to regulate the proliferation and differentiation of adipocytes by promoting lncSLC30A9 expression[J]. Mol Ther-nucl Acids, 2020, 22, 484- 499.
doi: 10.1016/j.omtn.2020.09.011 |
| 27 |
CORREIA DE SOUSA M , GJORGJIEVA M , DOLICKA D , et al. Deciphering miRNAs' action through miRNA editing[J]. IJMS, 2019, 20 (24): 6249.
doi: 10.3390/ijms20246249 |
| 28 |
SU J L , CHEN P S , JOHANSSON G , et al. Function and regulation of let-7 family microRNAs[J]. Microrna, 2012, 1 (1): 34- 39.
doi: 10.2174/2211536611201010034 |
| 29 |
FABIAN M R , SONENBERG N , FILIPOWICZ W . Regulation of mRNA translation and stability by microRNAs[J]. Annu Rev Biochem, 2010, 79 (1): 351- 379.
doi: 10.1146/annurev-biochem-060308-103103 |
| 30 |
FEI X , JIN M , WANG Y , et al. Transcriptome reveals key microRNAs involved in fat deposition between different tail sheep breeds[J]. PloS One, 2022, 17 (3): e0264804.
doi: 10.1371/journal.pone.0264804 |
| 31 |
JIANG Y , QIAN H Y . Transcription factors: Key regulatory targets of vascular smooth muscle cell in atherosclerosis[J]. Mol Med, 2023, 29 (1): 2.
doi: 10.1186/s10020-022-00586-2 |
| 32 | ZAMMIT P S. Function of the myogenic regulatory factors Myf5, MyoD, Myogenin and MRF4 in skeletal muscle, satellite cells and regenerative myogenesis[C]. Semin Cell Dev Biol, Academic Press, 2017, 72: 19-32. |
| 33 |
CROCE C M . Causes and consequences of microRNA dysregulation in cancer[J]. Nat Rev Genet, 2009, 10 (10): 704- 714.
doi: 10.1038/nrg2634 |
| 34 |
MENS M M J , GHANBARI M . Cell cycle regulation of stem cells by microRNAs[J]. Stem Cell Rev Rep, 2018, 14, 309- 322.
doi: 10.1007/s12015-018-9808-y |
| 35 |
虎巧燕, 翟相钦, 李一丹, 等. Bta-miR-101对牛睾丸支持细胞增殖、凋亡及分泌的影响[J]. 畜牧兽医学报, 2024, 55 (3): 1040- 1051.
doi: 10.11843/j.issn.0366-6964.2024.03.017 |
|
HU Q Y , ZHAI X Q , LI Y D , et al. Effects of bta-miR-101 on proliferation, apoptosis and secretion of bovine testicular sertoli cells[J]. Acta Veterinaria et Zootechnica Sinica, 2024, 55 (3): 1040- 1051.
doi: 10.11843/j.issn.0366-6964.2024.03.017 |
|
| 36 |
贾宇航, 郭良富, 张茹楠, 等. miR-127调控绵羊骨骼肌细胞增殖分化及其转录因子PAX3筛选[J]. 畜牧兽医学报, 2024, 55 (9): 3864- 3875.
doi: 10.11843/j.issn.0366-6964.2024.09.012 |
|
JIA Y H , GUO L F , ZHANG R N , et al. Regulation of proliferation and differentiation of ovine skeletal muscle cells by miR-127 and screening of its transcription factor PAX3[J]. Acta Veterinaria et Zootechnica Sinica, 2024, 55 (9): 3864- 3875.
doi: 10.11843/j.issn.0366-6964.2024.09.012 |
|
| 37 | PICARD B , LEFAUCHEUR L , BERRI C , et al. Muscle fibre ontogenesis in farm animal species[J]. RND, 2002, 42 (5): 415- 431. |
| 38 |
OSAKI M , OSHIMURA M , ITO H . PI3K-Akt pathway: its functions and alterations in human cancer[J]. Apoptosis, 2004, 9, 667- 676.
doi: 10.1023/B:APPT.0000045801.15585.dd |
| 39 | 李蕾, 沈铿. PIK3CA基因在浆液性卵巢癌中的拷贝数扩增分析及其机制探讨[J]. 现代妇产科进展, 2017, 26 (7): 481- 484. |
| LI L , SHEN K . Analysis of copy-number amplification of PIK3CA gene in serous ovarian cancer and exploration of its mechanism[J]. Progress in Obstetrics and Gynecology, 2017, 26 (7): 481- 484. | |
| 40 | 潘蕾蕾, 江卫兵, 方芳, 等. MiR-152-3p靶向PIK3CA基因对乳腺癌细胞生物学特性的调控及其机制[J]. 新乡医学院学报, 2019, 36 (12): 1130- 1136. |
| PAN L L , JIANG W B , FANG F , et al. Regulation of biological characteristics of breast cancer cells by miR-152-3p targeting pik3ca gene and its mechanism[J]. Journal of Xinxiang Medical University, 2019, 36 (12): 1130- 1136. |
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