» Articles » PMID: 35149744

LPIN1 Promotes Triglycerides Synthesis and is Transcriptionally Regulated by PPARG in Buffalo Mammary Epithelial Cells

Overview
Journal Sci Rep
Specialty Science
Date 2022 Feb 12
PMID 35149744
Authors
Affiliations
Soon will be listed here.
Abstract

Studies on 3T3-L1 cells and HepG2 hepatocytes have shown that phosphatidic acid phosphohydrolase1 (LPIN1) plays a key role in adipogenesis, acting as a co-activator of peroxisome proliferator-activated receptor gamma coactivator 1a (PGC-1a) to regulate fatty acid metabolism. However, the functional role and regulatory mechanism of LPIN1 gene in milk fat synthesis of buffalo are still unknown. In this study, overexpression of buffalo LPIN1 gene transfected with recombinant fusion expression vector significantly increased the expression of AGPAT6, DGAT1, DGAT2, GPAM and BTN1A1 genes involved in triglyceride (TAG) synthesis and secretion, as well as PPARG and SREBF1 genes regulating fatty acid metabolism in the buffalo mammary epithelial cells (BMECs), while the lentivirus-mediated knockdown of buffalo LPIN1 dramatically decreased the relative mRNA abundance of these genes. Correspondingly, total cellular TAG content in the BMECs increased significantly after LPIN1 overexpression, but decreased significantly after LPIN1 knockdown. In addition, the overexpression or knockdown of PPARG also enhanced or reduced the expression of LPIN1 and the transcriptional activity of its promoter. The core region of buffalo LPIN1 promoter spans from - 666 bp to + 42 bp, and two PPAR response elements (PPREs: PPRE1 and PPRE2) were identified in this region. Site mutagenesis analysis showed that PPARG directly regulated the transcription of buffalo LPIN1 by binding to the PPRE1 and PPRE2 on its core promoter. The results here reveal that the LPIN1 gene is involved in the milk fat synthesis of BMECs, and one of the important pathways is to participate in this process through direct transcriptional regulation of PPARG, which in turn significantly affects the content of TAG in BMECs.

Citing Articles

Sirtuin 1 Inhibits Fatty Acid Synthesis through Forkhead Box Protein O1-Mediated Adipose Triglyceride Lipase Expression in Goat Mammary Epithelial Cells.

He Q, Yao W, Lv L, Zhang X, Wu J, Luo J Int J Mol Sci. 2024; 25(18).

PMID: 39337411 PMC: 11432623. DOI: 10.3390/ijms25189923.


Gene Promotes Milk Fat Synthesis via the JAK2-STAT3 and mTOR Signaling Pathways in Buffalo Mammary Epithelial Cells.

Gao R, Zhu Q, Huang L, Fan X, Teng X, Miao Y Animals (Basel). 2024; 14(16).

PMID: 39199979 PMC: 11350831. DOI: 10.3390/ani14162446.


Spatial and phenotypic heterogeneity of resident and monocyte-derived macrophages during inflammatory exacerbations leading to pulmonary fibrosis.

Moos P, Cheminant J, Cowman S, Noll J, Wang Q, Musci T Front Immunol. 2024; 15:1425466.

PMID: 39100672 PMC: 11294112. DOI: 10.3389/fimmu.2024.1425466.


Research Progress on the Mechanism of Milk Fat Synthesis in Cows and the Effect of Conjugated Linoleic Acid on Milk Fat Metabolism and Its Underlying Mechanism: A Review.

Guo Y, Wei Z, Zhang Y, Cao J Animals (Basel). 2024; 14(2).

PMID: 38254373 PMC: 10812695. DOI: 10.3390/ani14020204.


Role of Different Members of the Gene Family in Milk Fat Synthesis in .

Li Z, Li R, Ren H, Qin C, Su J, Song X Genes (Basel). 2023; 14(11).

PMID: 38003015 PMC: 10671497. DOI: 10.3390/genes14112072.


References
1.
Moyes K, Drackley J, Morin D, Bionaz M, Rodriguez-Zas S, Everts R . Gene network and pathway analysis of bovine mammary tissue challenged with Streptococcus uberis reveals induction of cell proliferation and inhibition of PPARgamma signaling as potential mechanism for the negative relationships between immune.... BMC Genomics. 2009; 10:542. PMC: 2784807. DOI: 10.1186/1471-2164-10-542. View

2.
McManaman J, Russell T, Schaack J, Orlicky D, Robenek H . Molecular determinants of milk lipid secretion. J Mammary Gland Biol Neoplasia. 2007; 12(4):259-68. DOI: 10.1007/s10911-007-9053-5. View

3.
Lee J, Wang Y, Xu Y, Li Y, Tian F, Jiang M . Characterisation of gene expression related to milk fat synthesis in the mammary tissue of lactating yaks. J Dairy Res. 2017; 84(3):283-288. DOI: 10.1017/S0022029917000413. View

4.
Reue K, Zhang P . The lipin protein family: dual roles in lipid biosynthesis and gene expression. FEBS Lett. 2007; 582(1):90-6. PMC: 2848953. DOI: 10.1016/j.febslet.2007.11.014. View

5.
Chinetti G, Fruchart J, Staels B . Peroxisome proliferator-activated receptors (PPARs): nuclear receptors at the crossroads between lipid metabolism and inflammation. Inflamm Res. 2000; 49(10):497-505. DOI: 10.1007/s000110050622. View