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The Effects of Endocrine and Mechanical Stimulation on Stage I Lactogenesis in Bovine Mammary Epithelial Cells

机译:内分泌和机械刺激对牛乳腺上皮细胞I期泌乳的影响

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The study objective was to evaluate the effect of endocrine and mechanical (gel release) signaling on bovine mammary epithelial cell ultrastructure and gene expression. Cultures receiving only one stimulus demonstrated partially differentiated ultrastructure, which included abundant polysomes, limited rough endoplas-mic reticulum, and absence of secretory products, whereas the 2 stimuli together induced a more complete lactogenic phenotype that included increased rough en-doplasmic reticulum, abundant lipid droplets, and secretory vesicles containing casein micelles. The structural data indicated that although synthesis of milk components was initiated, the copious synthesis and secretion associated with stage II lactogenesis was not evident. Microarray analysis revealed that both prolac-tin and gel release independently regulated several genes linked to a wide array of cellular activities. In combination, they regulated fewer genes targeted to lactogenesis. Genes regulated by the combination treatment included claudin 7, multiple caseins, xanthine oxidoreductase, and several protein synthesis, packaging, and transport genes. Genes related to structural activity including keratin 15 (morphogenesis), α-spec-trin (cell shape via actin cytoskeleton), and chitinase-like protein 1 (tissue remodeling) were up-regulated by the combination treatment as was the transcription factor Kruppel-like factor 2 (KLF-2). However, Snail 2, which down-regulates and inhibits tight junction components, was repressed in response to the combination treatment. These results suggest coordination between endocrine and physical signals at the genomic level that produces a more specific and targeted transcriptional response associated with stage I lactogenesis. A molecu-rnlar pathway analysis of the differentially expressed genes revealed that genes regulating cell signaling were linked to those regulating cell structure and adhesion.
机译:研究目的是评估内分泌和机械(凝胶释放)信号传导对牛乳腺上皮细胞超微结构和基因表达的影响。仅接受一种刺激的培养物显示出部分分化的超微结构,包括丰富的多核糖体,有限的粗糙内质网和分泌产物,而这两种刺激共同诱导了更完整的产乳表型,包括增加的粗糙内质网,丰富的脂质液滴和含有酪蛋白胶束的分泌小泡。结构数据表明,尽管开始了牛奶成分的合成,但是与II期泌乳期有关的大量合成和分泌并不明显。微阵列分析显示,催乳素和凝胶释放均独立调节与多种细胞活性有关的几个基因。结合起来,它们调节的基因较少针对乳汁生成。联合治疗调节的基因包括claudin 7,多种酪蛋白,黄嘌呤氧化还原酶以及几种蛋白质合成,包装和转运基因。组合处理上调了与结构活性相关的基因,包括角蛋白15(形态发生),α-spec-trin(通过肌动蛋白细胞骨架的细胞形状)和几丁质酶样蛋白1(组织重塑),转录因子Kruppel-像因子2(KLF-2)。然而,下调并抑制紧密连接成分的Snail 2受到了联合治疗的抑制。这些结果表明,在基因组水平上内分泌信号和物理信号之间的协调产生了与I期泌乳期相关的更特异性和针对性的转录反应。差异表达基因的分子途径分析表明,调控细胞信号转导的基因与调控细胞结构和粘附的基因相关。

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