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利用山羊奶中的体细胞进行乳腺基因表达的动态研究。

Use of somatic cells from goat milk for dynamic studies of gene expression in the mammary gland.

作者信息

Boutinaud M, Rulquin H, Keisler D H, Djiane J, Jammes H

机构信息

Biologie Cellulaire et Moléculaire, INRA, Jouy-en-Josas, France.

出版信息

J Anim Sci. 2002 May;80(5):1258-69. doi: 10.2527/2002.8051258x.

Abstract

Somatic cells are present in the milk throughout lactation and consist of leukocytes and epithelial cells exfoliated from the mammary epithelium. Our objective was to determine the efficacy of using somatic cells from goat milk for dynamic studies of gene expression in the mammary gland. Over a 4-wk interval, cells were isolated from daily morning milk samples and samples taken 30 min after milking. They were characterized by direct cell counts and by flow cytometry analysis after immunostaining with antibodies directed against cytokeratin and CD45, a common leukocyte antigen. Epithelial cell counts within the morning milk ranged from 15 to 45% of total milk somatic cells. After-milking samples contained twice as many cells as did morning milk samples. The RNA was extracted from the somatic cells of both types of milk samples with equivalent efficiency (a mean of 1.2 microg RNA/mL of milk). Four mRNA variants of the alpha-S1 casein gene were detected by Northern blot analysis and the amount of each mRNA in milk cells was related to protein concentration in milk. The comparison between mRNA from the mammary gland and from congruently collected milk cells showed that relative amounts of mRNA for each milk-protein (alpha-S1 and kappa-casein and alactalbumin) were conserved. In a third experiment, daily milk cell RNA preparations were extracted to assess the effect of growth hormone (GH) on mammary gene expression; four goats were separated into two groups in order to perform a switch-back design consisting of three treatment weeks: Control, GH-Control or GH-Control-GH. In this study, treatment of goats with GH increased milk yields by 5%. Throughout the control and GH treatments, the expression of the three milk-protein genes studied were highly and significantly correlated (r = 0.949 and r = 0.958, P < 0.001 for, respectively, alpha-S1 and kappa-casein and for alpha-S1 casein and alpha-lactalbumin). During GH treatment, the three milk-protein mRNA abundances increased with the same pattern. In conclusion, the opportunity to use milk somatic cells for RNA preparation and analysis provides a significant improvement over the use of biopsy samples in assessing gene activity in the mammary gland and allows easy and repetitive sampling without damaging mammary tissue. Furthermore, we propose that this method could be used to investigate the transcriptional status of the mammary gland of an animal in relation to its genotype, nutritional and pathologic status, and under influence by hormonal factors.

摘要

在整个泌乳期,体细胞存在于乳汁中,由白细胞和从乳腺上皮脱落的上皮细胞组成。我们的目的是确定使用山羊奶中的体细胞进行乳腺基因表达动态研究的效果。在4周的时间间隔内,从每日早晨的乳汁样本以及挤奶后30分钟采集的样本中分离细胞。通过直接细胞计数以及用针对细胞角蛋白和CD45(一种常见的白细胞抗原)的抗体进行免疫染色后的流式细胞术分析对细胞进行表征。早晨乳汁中的上皮细胞计数占乳汁体细胞总数的15%至45%。挤奶后样本中的细胞数量是早晨乳汁样本的两倍。从两种类型的乳汁样本的体细胞中提取RNA的效率相当(平均每毫升乳汁提取1.2微克RNA)。通过Northern印迹分析检测到α-S1酪蛋白基因的四种mRNA变体,并且乳汁细胞中每种mRNA的量与乳汁中的蛋白质浓度相关。乳腺和同时采集的乳汁细胞的mRNA之间的比较表明,每种乳蛋白(α-S1、κ-酪蛋白和α-乳白蛋白)的mRNA相对量是保守的。在第三个实验中,每日提取乳汁细胞RNA制剂以评估生长激素(GH)对乳腺基因表达的影响;将四只山羊分成两组,以进行由三个处理周组成的折返设计:对照组、GH-对照组或GH-对照组-GH。在这项研究中,用GH处理山羊使产奶量提高了5%。在整个对照和GH处理过程中,所研究的三种乳蛋白基因的表达高度显著相关(α-S1和κ-酪蛋白以及α-S1酪蛋白和α-乳白蛋白的r分别为0.949和0.958,P<0.001)。在GH处理期间,三种乳蛋白mRNA丰度以相同模式增加。总之,利用乳汁体细胞进行RNA制备和分析的机会相较于使用活检样本评估乳腺中的基因活性有显著改进,并且允许在不损害乳腺组织的情况下轻松且重复地采样。此外,我们建议这种方法可用于研究动物乳腺的转录状态与其基因型、营养和病理状态以及激素因素影响之间的关系。

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