Lee E Y, Lee W H, Kaetzel C S, Parry G, Bissell M J
Proc Natl Acad Sci U S A. 1985 Mar;82(5):1419-23. doi: 10.1073/pnas.82.5.1419.
Mouse mammary epithelial cells (MMEC) secrete certain milk proteins only when cultured on floating collagen gels. We demonstrate here that modulation of milk proteins by substrata is manifested at several regulatory levels; (i) Cells cultured on floating collagen gels have 3- to 10-fold more casein mRNA than cells cultured on plastic or attached collagen gels. (ii) Cells on the latter two "flat" substrata, nevertheless, synthesize a significant amount of caseins, indicating that the remaining mRNA is functional. (iii) Cells on all substrata are inducible for casein mRNA and casein proteins by prolactin, but the extent of induction is greater on collagen than that on plastic--i.e., the substratum confers an altered degree of inducibility. (iv) Cells on all substrata synthesize casein proteins at rates proportional to the amount of casein mRNA, but the newly synthesized caseins in cells on plastic are degraded intracellularly, whereas those synthesized by cells on floating gels are secreted into the medium. (v) Cells on all substrata examined lose virtually all mRNA for whey acidic protein despite the fact that this mRNA is abundant in the mammary gland itself; we conclude that additional, as-yet-unknown, factors are necessary for synthesis and secretion of whey acidic protein in culture.
小鼠乳腺上皮细胞(MMEC)只有在漂浮的胶原蛋白凝胶上培养时才会分泌某些乳蛋白。我们在此证明,基质对乳蛋白的调节作用体现在几个调控水平上:(i)在漂浮的胶原蛋白凝胶上培养的细胞,其酪蛋白mRNA比在塑料或附着的胶原蛋白凝胶上培养的细胞多3至10倍。(ii)然而,后两种“平坦”基质上的细胞仍能合成大量酪蛋白,这表明剩余的mRNA是有功能的。(iii)所有基质上的细胞对催乳素诱导酪蛋白mRNA和酪蛋白的合成均有反应,但胶原蛋白上的诱导程度大于塑料上的——即基质赋予了不同程度的诱导性。(iv)所有基质上的细胞合成酪蛋白的速率与酪蛋白mRNA的量成正比,但塑料上细胞新合成的酪蛋白在细胞内被降解,而漂浮凝胶上细胞合成的酪蛋白则分泌到培养基中。(v)尽管乳清酸性蛋白的mRNA在乳腺组织中含量丰富,但在所检测的所有基质上的细胞几乎都失去了所有该mRNA;我们得出结论,在培养中合成和分泌乳清酸性蛋白还需要其他尚未知晓的因素。