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一种杂交牛β-酪蛋白/bGH基因将转基因表达导向转基因小鼠的肺和乳腺。

A hybrid bovine beta-casein/bGH gene directs transgene expression to the lung and mammary gland of transgenic mice.

作者信息

Oh K B, Choi Y H, Kang Y K, Choi W S, Kim M O, Lee K S, Lee K K, Lee C S

机构信息

Korea Research Institute of Bioscience and Biotechnology, Taejon, Korea.

出版信息

Transgenic Res. 1999 Aug;8(4):307-11. doi: 10.1023/a:1008978129000.

Abstract

We investigated spatial and temporal expression of bGH controlled by two different sizes (1.8 kb and 15 kb) of 5'-flanking sequences of the bovine beta-casein in transgenic mice. In the 1.8-kb promoter-containing mice, bGH expression was specifically confined to lung and mammary gland at lactation. While mammary gland expression was highly variable depending on the lines, lung expression was relatively constant with a high level in most lines. Moreover, this dual-tissue specificity of bGH expression was consistently retained in all of the 15 kb-promoter-containing mice, although a low ectopic expression was sometimes detected in salivary gland or brain. During mammary gland development in the 1.8-kb promoter-containing mice was mammary gland expression first detected at lactation, following the bovine rather than murine pattern of beta-casein expression. In contrast, lung expression was almost constant regardless of mammary gland developmental state or sex. Therefore, it can be concluded that a combination of the bovine beta-casein promoter and bGH gene directs a distinct dual-tissue specific bGH expression with different regulatory mechanisms between mammary gland and lung and as little as 1.8-kb promoter is sufficient for the proper regulation of the bovine beta-casein gene in mammary gland.

摘要

我们在转基因小鼠中研究了由牛β-酪蛋白5'-侧翼序列的两种不同大小(1.8 kb和15 kb)控制的bGH的时空表达。在含1.8 kb启动子的小鼠中,bGH表达在哺乳期特异性地局限于肺和乳腺。虽然乳腺表达因品系而异高度可变,但肺表达在大多数品系中相对恒定且水平较高。此外,bGH表达的这种双组织特异性在所有含15 kb启动子的小鼠中都始终保留,尽管有时在唾液腺或脑中检测到低水平的异位表达。在含1.8 kb启动子的小鼠乳腺发育过程中,乳腺表达首先在哺乳期被检测到,遵循牛而非小鼠的β-酪蛋白表达模式。相反,无论乳腺发育状态或性别如何,肺表达几乎恒定。因此,可以得出结论,牛β-酪蛋白启动子和bGH基因的组合指导了一种独特的双组织特异性bGH表达,在乳腺和肺之间具有不同的调节机制,并且仅1.8 kb的启动子就足以在乳腺中正确调节牛β-酪蛋白基因。

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