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Y J Topper

Publications and source records attributed to Y J Topper.

71 records · Page 4Linked to original sources

A novel action of insulin on phosphoprotein formation by mammary gland explants.

Studies on the induction of casein synthesis in competent daughter cells formed in mammary gland explants have revealed a new action of insulin. Treatment with prolactin, in the absence of insulin, is responsible for the formation of some polypeptides which are destined to become phosphoproteins, or for the formation of a unique protein-kinase, or both. In any case, insulin is required for participation of the prolactin-induced factor(s) in a protein-kinase reaction.

Animals↗

Hormone-dependent differentiation of immature mouse mammary gland in vitro.

Explants from the mammary glands of 3-week-old mice can be induced to synthesize casein in vitro in the absence of lobuloalveolar development. Maximum biochemical differentiation requires the presence of insulin, hydrocortisone, and prolactin in the culture medium. In contrast to explants from adult mice, the mammary epithelium of immature animals undergoes DNA synthesis and mitosis in vitro in the absence of exogenous insulin; however, such proliferation does not lead to the formation of differentiated daughter cells. Insulin acts in at least two ways during the proliferative phases of the cell cycle of differentiating mammary epithelial cells.

Aging↗

Hormone-dependent differentiation of mammary gland: sequence of action of hormones in relation to cell cycle.

Differentiation of mouse mammary gland in vitro requires insulin, hydrocortisone, and prolactin. The epithelial cells must first divide in order to synthesize casein in response to these hormones. Insulin is required for the initiation of DNA synthesis and is also necessary during G(1) phase (after mitosis). Prolactin can elicit the overt differentiative responses after mitosis. Activity of hydrocortisone precedes that of prolactin, that is, after mitosis it is not capable of eliciting the differentiative response.

Animals↗

Progesterone and glucocorticoid in relation to the growth and differentiation of mammary epithelium.

In pursuit of a model system in which to determine whether exposure to progesterone is necessary for mammary epithlial cells to develop their differentiative potential, hormone-dependent growth of the mammary epithelial rudiment in adult male mice has been reexplored. The formation of ductal cells can be effected by administration of estradiol in the absence of endogenous progesterone and glucocorticoid, using adrenalectomized-castrated animals. The resulting epithlium contains three times more lactose synthetase activity, per epithelial cell, than that in midpregnant mice. The blood spermidine level in these doubly operated animals was similar to the concentration of spermidine required to substitute effectively for glucocorticoid during mammary differentiation in vitro, It is suggested that spermidine can partially supplant glucocorticoid in vivo in milk protein synthesis. It is also concluded that, unlike other secondary sex tissues, mammary cells do not require exposure to progesterone during their ontogeny in order to realize their differentiative potential. The positive role of this steroid in mammary development is apparently limited to its effect on the formation of alveolar structures.

Adrenalectomy↗