European community and US-FDA approval of recombinant human antithrombin produced in genetically altered goats
Adiguzel C, Iqbal O, Demir M, Fareed J (2009) European community and US-FDA approval of recombinant human antithrombin produced in genetically altered goats. Clin Appl Thromb Hemost 15: 645-651.
Vectors for efficient and high-throughput construction of fluorescent drosophila reporters using the PhiC31 site-specific integration system
Boy AL, Zhai Z, Habring-Müller A et al (2010) Vectors for efficient and high-throughput construction of fluorescent drosophila reporters using the PhiC31 site-specific integration system. Genesis 48: 452-456.
Cloned transgenic cattle produce milk with higher levels of beta-casein and kappa-casein
Brophy B, Smolenski G, Wheeler T et al (2003) Cloned transgenic cattle produce milk with higher levels of beta-casein and kappa-casein. Nat Biotechnol 21: 157-162.
Molecular cloning and analysis of bovine prolactin full-long genomic as well as cDNA sequences
(in Chinese)
Cao X, Wang Q, Yan JB et al (2002) Molecular cloning and analysis of bovine prolactin full-long genomic as well as cDNA sequences. Yi Chuan Xue Bao 29: 768-773 (in Chinese).
Prolactin, growth hormone and epidermal growth factor activate STAT5 in different compartments of mammary tissue and exert different and overlapping developmental effects
Gallego MI, Binart N, Robinson GW et al (2001) Prolactin, growth hormone and epidermal growth factor activate STAT5 in different compartments of mammary tissue and exert different and overlapping developmental effects. Dev Biol 229: 163-175.
Posttranscriptional regulation of the human prolactin gene in IM-9-P3 cells by retinoic acid
Gellersen B, Kempf R, Hartung S et al (1992) Posttranscriptional regulation of the human prolactin gene in IM-9-P3 cells by retinoic acid. Endocrinology 131: 1017-1025.
Expression of full-length human pro-urokinase in mammary glands of transgenic mice
Gursky Y, Bibilashvili R, Minashkin M et al (2009) Expression of full-length human pro-urokinase in mammary glands of transgenic mice. Transgenic Res 18: 747-756.
Construction of modular and versatile plasmid vectors for the high-level expression of single or multiple genes in insects and insect cell lines
Huynh CQ, Zieler H (1999) Construction of modular and versatile plasmid vectors for the high-level expression of single or multiple genes in insects and insect cell lines. J Mol Biol 288: 13-20.
Overexpression and forced activation of stat5 in mammary gland of transgenic mice promotes cellular proliferation, enhances differentiation, and delays postlactational apoptosis
Iavnilovitch E, Groner B, Barash I (2002) Overexpression and forced activation of stat5 in mammary gland of transgenic mice promotes cellular proliferation, enhances differentiation, and delays postlactational apoptosis. Mol Cancer Res 1: 32-47.
Bovine prolactin promotes the expression of human transferrin in the milk of transgenic mice
Li S, Guo XB, Gong XL et al (2010) Bovine prolactin promotes the expression of human transferrin in the milk of transgenic mice. Biotechnol Lett 32: 787-793.
Production and processing of milk from transgenic goats expressing human lysozyme in the mammary gland
Maga EA, Shoemaker CF, Rowe JD et al (2006) Production and processing of milk from transgenic goats expressing human lysozyme in the mammary gland. J Dairy Res 89: 518-524.
β-Casein gene promoter activity is regulated by the hormone-mediated relief of transcriptional repression and a mammary gland-specific nuclear factor
Schmitt-Ney M, Doppler W, Ball RK et al (1991) β-Casein gene promoter activity is regulated by the hormone-mediated relief of transcriptional repression and a mammary gland-specific nuclear factor. Mol Cell Biol 11: 3745-3755.