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小鼠乳腺中连接蛋白的发育表达模式及其调控:连接蛋白30在泌乳发生过程中的表达

Developmental expression patterns and regulation of connexins in the mouse mammary gland: expression of connexin30 in lactogenesis.

作者信息

Talhouk Rabih S, Elble Randolph C, Bassam Rola, Daher Mariam, Sfeir Agnel, Mosleh Lina Abi, El-Khoury Hilda, Hamoui Samar, Pauli Bendicht U, El-Sabban Marwan E

机构信息

Department of Biology, Faculty of Arts and Sciences, American University of Beirut, PO Box 11-0236, Beirut, Lebanon.

出版信息

Cell Tissue Res. 2005 Jan;319(1):49-59. doi: 10.1007/s00441-004-0915-5. Epub 2004 Oct 27.

Abstract

The mammary gland reaches a fully differentiated phenotype at lactation, a stage characterized by the abundant expression of beta-casein. We have investigated the expression and regulation of gap junction proteins (connexins, Cx) during the various developmental stages of mouse mammary gland. Immunohistochemical analysis, with specific antibodies, reveals that Cx26 and Cx32 are expressed and confined to the cell borders of luminal epithelial cells in all developmental stages of the gland. Cx26 and Cx32 expression, at the mRNA and protein levels, increases in pregnancy and peaks in lactation. Whereas Cx43 mRNA decreases in pregnancy and lactation, the functional activity of Cx43 protein, which has been localized to myoepithelial cells, is regulated (through phosphorylation) during pregnancy and peaks during lactation. Cx30 mRNA and proteins have, for the first time, been detected in mammary gland epithelia. Using reverse transcription/polymerase chain reaction and sequencing techniques, we show that Cx30 is abundant in pregnant and lactating mammary gland. Cx30 protein levels have not been detected in the mammary gland prior to day 15 of pregnancy, whereas maximum expression occurs at the onset of lactation. In mouse mammary cells in culture, Cx30 is epithelial-cell-specific and is induced by lactogenic hormones. These data identify a novel player in mammary differentiation and suggest a potential role for Cx30 in the fully differentiated gland.

摘要

乳腺在泌乳期达到完全分化的表型,此阶段的特征是β-酪蛋白大量表达。我们研究了缝隙连接蛋白(连接蛋白,Cx)在小鼠乳腺不同发育阶段的表达及调控情况。用特异性抗体进行免疫组织化学分析显示,在乳腺的所有发育阶段,Cx26和Cx32均有表达且局限于腔面上皮细胞的细胞边界处。Cx26和Cx32在mRNA和蛋白质水平的表达在妊娠期增加,并在泌乳期达到峰值。虽然Cx43 mRNA在妊娠期和泌乳期减少,但定位于肌上皮细胞的Cx43蛋白的功能活性在妊娠期受到调控(通过磷酸化),并在泌乳期达到峰值。首次在乳腺上皮中检测到Cx30 mRNA和蛋白。利用逆转录/聚合酶链反应和测序技术,我们发现Cx30在妊娠和泌乳的乳腺中含量丰富。在妊娠第15天之前,乳腺中未检测到Cx30蛋白水平,而在泌乳开始时表达量最高。在培养的小鼠乳腺细胞中,Cx30具有上皮细胞特异性,且由催乳激素诱导产生。这些数据确定了一个乳腺分化中的新参与者,并提示Cx30在完全分化的腺体中可能发挥的作用。

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