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Inhibition of mammary duct development but not alveolar outgrowth during pregnancy in transgenic mice expressing active TGF-beta 1.

Publication ,  Journal Article
Pierce, DF; Johnson, MD; Matsui, Y; Robinson, SD; Gold, LI; Purchio, AF; Daniel, CW; Hogan, BL; Moses, HL
Published in: Genes Dev
December 1993

The transforming growth factors beta (TGFs-beta) are potent inhibitors of cell proliferation and are usually secreted in a latent form. TGF-beta 1, TGF-beta 2, and TGF-beta 3 are expressed in distinct but overlapping patterns in the developing mouse mammary gland. To study the role of transforming growth factor-beta 1 (TGF-beta 1) in normal mammary development and in mammary neoplasia, we have constructed three transgenic mouse lines that express a simian TGF-beta 1 s223/225 mutated to produce a constitutively active product under the control of the MMTV enhancer/promoter. Expression of the transgene, as confirmed by in situ hybridization, immunohistochemistry, and Northern blot analysis, was associated with marked suppression of the normal pattern of mammary ductal tree development in female transgenics. Reduction in total ductal tree volume was observed at 7 weeks, soon after estrous begins, and was most apparent at 13 weeks, as ductal growth in the normal mammary gland declines. This effect was seen in all three lines. However, during pregnancy, alveolar outgrowths developed from the hypoplastic ductal tree, and lactation occurred, therefore, all transgenic females could feed full litters. Unlike many other transgenic mouse models in which expression of growth factors or oncogenes under control of the MMTV promoter leads to mammary epithelial hyperplasia and increased tumor formation, the MMTV-TGF-beta 1S223/225 transgene causes conditional hypoplasia of the mammary ductal tree and no spontaneous tumors have been detected in the MMTV-TGF-beta 1S223/225 transgenic animals.

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Published In

Genes Dev

DOI

ISSN

0890-9369

Publication Date

December 1993

Volume

7

Issue

12A

Start / End Page

2308 / 2317

Location

United States

Related Subject Headings

  • Transforming Growth Factor beta
  • Pregnancy, Animal
  • Pregnancy
  • Mice, Transgenic
  • Mice
  • Mammary Tumor Virus, Mouse
  • Mammary Glands, Animal
  • Gene Expression
  • Female
  • Developmental Biology
 

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Pierce, D. F., Johnson, M. D., Matsui, Y., Robinson, S. D., Gold, L. I., Purchio, A. F., … Moses, H. L. (1993). Inhibition of mammary duct development but not alveolar outgrowth during pregnancy in transgenic mice expressing active TGF-beta 1. Genes Dev, 7(12A), 2308–2317. https://doi.org/10.1101/gad.7.12a.2308
Pierce, D. F., M. D. Johnson, Y. Matsui, S. D. Robinson, L. I. Gold, A. F. Purchio, C. W. Daniel, B. L. Hogan, and H. L. Moses. “Inhibition of mammary duct development but not alveolar outgrowth during pregnancy in transgenic mice expressing active TGF-beta 1.Genes Dev 7, no. 12A (December 1993): 2308–17. https://doi.org/10.1101/gad.7.12a.2308.
Pierce DF, Johnson MD, Matsui Y, Robinson SD, Gold LI, Purchio AF, et al. Inhibition of mammary duct development but not alveolar outgrowth during pregnancy in transgenic mice expressing active TGF-beta 1. Genes Dev. 1993 Dec;7(12A):2308–17.
Pierce, D. F., et al. “Inhibition of mammary duct development but not alveolar outgrowth during pregnancy in transgenic mice expressing active TGF-beta 1.Genes Dev, vol. 7, no. 12A, Dec. 1993, pp. 2308–17. Pubmed, doi:10.1101/gad.7.12a.2308.
Pierce DF, Johnson MD, Matsui Y, Robinson SD, Gold LI, Purchio AF, Daniel CW, Hogan BL, Moses HL. Inhibition of mammary duct development but not alveolar outgrowth during pregnancy in transgenic mice expressing active TGF-beta 1. Genes Dev. 1993 Dec;7(12A):2308–2317.

Published In

Genes Dev

DOI

ISSN

0890-9369

Publication Date

December 1993

Volume

7

Issue

12A

Start / End Page

2308 / 2317

Location

United States

Related Subject Headings

  • Transforming Growth Factor beta
  • Pregnancy, Animal
  • Pregnancy
  • Mice, Transgenic
  • Mice
  • Mammary Tumor Virus, Mouse
  • Mammary Glands, Animal
  • Gene Expression
  • Female
  • Developmental Biology