Wanyonyi Stephen S, Kumar Amit, Du Preez Ryan, Lefevre Christophe, Nicholas Kevin R
Institute for Agriculture and the Environment, University of Southern Queensland, West St., Toowoomba, QLD, Australia.
School of Medicine, Deakin University, VIC, Australia.
Biochem Biophys Rep. 2017 Sep 5;12:120-128. doi: 10.1016/j.bbrep.2017.08.013. eCollection 2017 Dec.
The unique lactation strategy of the tammar wallaby has been invaluable in evaluating the role of lactogenic hormones and the extracellular matrix (ECM) in the local control of mammary gland function. However molecular pathways through which hormones and ECM exert their effect on wallaby mammary gland function remain unclear. This study undertakes transcriptome analysis of wallaby mammary epithelial cells (WallMEC) following treatment with mammary ECM from two distinct stages of lactation.
WallMEC from MID lactation mammary glands were cultured on ECM from MID or LATE lactation and treated for 5 days with 1 μg/ml cortisol, 1 μg/ml insulin, 0.2 µg/ml prolactin, 650 pg/ml triodothyronine and 1 pg/ml estradiol to induce lactation. WallMEC RNA from triplicate ECM treatments was used to perform RNAseq.
ECM from MID and LATE lactation differentially regulated key genes in sugar and lipid metabolism. Seven pathways including galactose metabolism, lysosome, cell adhesion molecules (CAM), p53 signaling, the complement and coagulation and Nod-like receptor signaling pathways were only significantly responsive to ECM in the presence of hormones. The raw RNA-seq data for this project are available on the NCBI Gene Expression Omnibus (GEO) browser (accession number GSE81210).
A potential role of ECM in regulation of the caloric content of milk, among other functions including apoptosis, cell proliferation and differentiation has been identified.
This study has used a non-eutherian lactation model to demonstrate the synergy between ECM and hormones in the local regulation of mammary function.
袋鼠独特的泌乳策略对于评估催乳激素和细胞外基质(ECM)在乳腺功能局部调控中的作用具有重要价值。然而,激素和ECM对袋鼠乳腺功能发挥作用的分子途径仍不清楚。本研究对处于泌乳两个不同阶段的乳腺ECM处理后的袋鼠乳腺上皮细胞(WallMEC)进行了转录组分析。
将来自泌乳中期乳腺的WallMEC培养在泌乳中期或晚期的ECM上,并用1μg/ml皮质醇、1μg/ml胰岛素、0.2μg/ml催乳素、650pg/ml三碘甲状腺原氨酸和1pg/ml雌二醇处理5天以诱导泌乳。来自一式三份ECM处理的WallMEC RNA用于进行RNA测序。
泌乳中期和晚期的ECM对糖和脂质代谢中的关键基因有不同的调控作用。包括半乳糖代谢、溶酶体、细胞黏附分子(CAM)、p53信号传导、补体和凝血以及Nod样受体信号传导途径在内的七条途径仅在存在激素的情况下对ECM有显著反应。该项目的原始RNA测序数据可在NCBI基因表达综合数据库(GEO)浏览器上获取(登录号GSE81210)。
已确定ECM在调节乳汁热量含量以及包括细胞凋亡、细胞增殖和分化在内的其他功能中具有潜在作用。
本研究使用非真兽类泌乳模型证明了ECM与激素在乳腺功能局部调节中的协同作用。