Cohen Bat-Chen, Shamay Avi, Argov-Argaman Nurit
Department of Animal Sciences, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Jerusalem, Israel.
Animal Science Department, The Volcani Center, The Ministry of Agriculture, Rehovot, Israel.
PLoS One. 2015 Mar 10;10(3):e0121645. doi: 10.1371/journal.pone.0121645. eCollection 2015.
Milk fat globule size is determined by the size of its precursors-intracellular lipid droplets-and is tightly associated with its composition. We examined the relationship between phospholipid composition of mammary epithelial cells and the size of both intracellular and secreted milk fat globules. Primary culture of mammary epithelial cells was cultured in medium without free fatty acids (control) or with 0.1 mM free capric, palmitic or oleic acid for 24 h. The amount and composition of the cellular lipids and the size of the lipid droplets were determined in the cells and medium. Mitochondrial quantity and expression levels of genes associated with mitochondrial biogenesis and polar lipid composition were determined. Cells cultured with oleic and palmitic acids contained similar quantities of triglycerides, 3.1- and 3.8-fold higher than in controls, respectively (P < 0.0001). When cultured with oleic acid, 22% of the cells contained large lipid droplets (>3 μm) and phosphatidylethanolamine concentration was higher by 23 and 63% compared with that in the control and palmitic acid treatments, respectively (P < 0.0001). In the presence of palmitic acid, only 4% of the cells contained large lipid droplets and the membrane phosphatidylcholine concentration was 22% and 16% higher than that in the control and oleic acid treatments, respectively (P < 0.0001). In the oleic acid treatment, approximately 40% of the lipid droplets were larger than 5 μm whereas in that of the palmitic acid treatment, only 16% of the droplets were in this size range. Triglyceride secretion in the oleic acid treatment was 2- and 12-fold higher compared with that in the palmitic acid and control treatments, respectively. Results imply that membrane composition of bovine mammary epithelial cells plays a role in controlling intracellular and secreted lipid droplets size, and that this process is not associated with cellular triglyceride content.
乳脂肪球的大小由其前体——细胞内脂质滴的大小决定,并与其组成紧密相关。我们研究了乳腺上皮细胞的磷脂组成与细胞内及分泌的乳脂肪球大小之间的关系。将乳腺上皮细胞原代培养于不含游离脂肪酸的培养基(对照)或含0.1 mM游离癸酸、棕榈酸或油酸的培养基中24小时。测定细胞和培养基中细胞脂质的含量和组成以及脂质滴的大小。测定线粒体数量以及与线粒体生物发生和极性脂质组成相关的基因表达水平。用油酸和棕榈酸培养的细胞含有相似数量的甘油三酯,分别比对照高3.1倍和3.8倍(P < 0.0001)。用油酸培养时,22%的细胞含有大脂质滴(>3μm),磷脂酰乙醇胺浓度分别比对照和棕榈酸处理高23%和63%(P < 0.0001)。在棕榈酸存在下,只有4%的细胞含有大脂质滴,膜磷脂酰胆碱浓度分别比对照和油酸处理高22%和16%(P < 0.0001)。在油酸处理中,约40%的脂质滴大于5μm,而在棕榈酸处理中,只有16%的脂质滴在此大小范围内。油酸处理中的甘油三酯分泌分别比棕榈酸和对照处理高2倍和12倍。结果表明,牛乳腺上皮细胞的膜组成在控制细胞内和分泌的脂质滴大小方面起作用,并且这一过程与细胞甘油三酯含量无关。