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Key stages in mammary gland development. Secretory activation in the mammary gland: its not just about milk protein synthesis!

机译:乳腺发育的关键阶段。乳腺中的分泌激活:这不仅与牛奶蛋白质合成有关!

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摘要

The transition from pregnancy to lactation is a critical event in the survival of the newborn since all the nutrient requirements of the infant are provided by milk. While milk contains numerous components, including proteins, that aid in maintaining the health of the infant, lactose and milk fat represent the critical energy providing elements of milk. Much of the research to date on mammary epithelial differentiation has focused upon expression of milk protein genes, providing a somewhat distorted view of alveolar differentiation and secretory activation. While expression of milk protein genes increases during pregnancy and at secretory activation, the genes whose expression is more tightly regulated at this transition are those that regulate lipid biosynthesis. The sterol regulatory element binding protein (SREBP) family of transcription factors is recognized as regulating fatty acid and cholesterol biosynthesis. We propose that SREBP1 is a critical regulator of secretory activation with regard to lipid biosynthesis, in a manner that responds to diet, and that the serine/threonine protein kinase Akt influences this process, resulting in a highly efficient lipid synthetic organ that is able to support the nutritional needs of the newborn.
机译:从妊娠到哺乳的过渡是新生儿存活的关键事件,因为婴儿的所有营养需求都是通过牛奶提供的。牛奶包含多种成分(包括蛋白质),有助于维持婴儿的健康,而乳糖和乳脂则是提供乳汁的关键能量。迄今为止,关于乳腺上皮分化的许多研究都集中在乳蛋白基因的表达上,从而提供了对肺泡分化和分泌激活的某种歪曲观点。虽然在怀孕期间和分泌激活时乳蛋白基因的表达增加,但在这种转变过程中表达受到更严格调控的基因是那些调节脂质生物合成的基因。固醇调节元件结合蛋白(SREBP)家族的转录因子被认为是调节脂肪酸和胆固醇的生物合成。我们认为SREBP1是脂类生物合成中分泌激活的关键调节剂,对饮食有反应,而丝氨酸/苏氨酸蛋白激酶Akt会影响这一过程,从而产生一种高效的脂类合成器官,能够支持新生儿的营养需求。

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