Centre for Biotechnology, Chemistry and Systems Biology, BioDeakin, Deakin University, 75 Pigdons Rd., 3217 VIC, Australia.
Matrix Biol. 2013 Aug 8;32(6):342-51. doi: 10.1016/j.matbio.2013.02.001. Epub 2013 May 9.
Asynchronous concurrent lactation (ACL) is an extreme lactation strategy in macropod marsupials including the tammar wallaby, that may hold the key to understanding local control of mammary epithelial cell function. Marsupials have a short gestation and a long lactation consisting of three phases; P2A, P2B and P3, representing early, mid and late lactation respectively and characterised by profound changes in milk composition. A lactating tammar is able to concurrently produce phase 2A and 3 milk from adjacent glands in order to feed a young newborn and an older sibling at heel. Physiological effectors of ACL remain unknown and in this study the extracellular matrix (ECM) is investigated for its role in switching mammary phenotypes between phases of tammar wallaby lactation. Using the level of expression of the genes for the phase specific markers tELP, tWAP, and tLLP-B representing phases 2A, 2B and 3 respectively we show for the first time that tammar wallaby mammary epithelial cells (WallMECs) extracted from P2B acquire P3 phenotype when cultured on P3 ECM. Similarly P2A cells acquire P2B phenotype when cultured on P2B ECM. We further demonstrate that changes in phase phenotype correlate with phase-specific changes in ECM composition. This study shows that progressive changes in ECM composition in individual mammary glands provide a local regulatory mechanism for milk protein gene expression thereby enabling the mammary glands to lactate independently.
异步并发泌乳 (ACL) 是一种极端的泌乳策略,存在于包括袋鼯在内的有袋目哺乳动物中,这种策略可能是理解乳腺上皮细胞功能局部控制的关键。有袋类动物的妊娠期很短,哺乳期很长,分为三个阶段;P2A、P2B 和 P3,分别代表早期、中期和晚期泌乳,其特点是乳汁成分发生深刻变化。哺乳期的袋鼯能够从相邻的腺体同时产生 2A 期和 3 期的乳汁,以喂养一个新生的幼崽和一个处于哺乳期的幼崽。ACL 的生理效应因子尚不清楚,在这项研究中,细胞外基质 (ECM) 被用来研究其在切换袋鼯泌乳期乳腺表型方面的作用。通过检测分别代表 2A 期、2B 期和 3 期的阶段特异性标记物 tELP、tWAP 和 tLLP-B 的基因表达水平,我们首次表明,从 P2B 提取的袋鼯乳腺上皮细胞 (WallMECs) 在 P3 ECM 上培养时获得 P3 表型。同样,当在 P2B ECM 上培养时,P2A 细胞获得 P2B 表型。我们进一步证明,表型的阶段变化与 ECM 组成的阶段特异性变化相关。本研究表明,单个乳腺中 ECM 组成的渐进变化为乳蛋白基因表达提供了一种局部调节机制,从而使乳腺能够独立泌乳。