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胰岛素样生长因子作为一种新型刺激物,通过激活 MAPK 级联反应,促进鲤鱼脑垂体细胞中生长激素的分泌和合成。

Insulin-like growth factor as a novel stimulator for somatolactin secretion and synthesis in carp pituitary cells via activation of MAPK cascades.

机构信息

School of Biological Sciences, University of Hong Kong, Hong Kong, China.

出版信息

Am J Physiol Endocrinol Metab. 2011 Dec;301(6):E1208-19. doi: 10.1152/ajpendo.00347.2011. Epub 2011 Aug 23.

Abstract

Somatolactin (SL), a member of the growth hormone/prolactin family, is a pituitary hormone unique to fish models. Although SL is known to have diverse functions in fish, the mechanisms regulating its secretion and synthesis have not been fully characterized. Using grass carp pituitary cells as a model, here we examined the role of insulin-like growth factor (IGF) in SL regulation at the pituitary level. As a first step, the antisera for the two SL isoforms expressed in the carp pituitary, SLα and SLβ, were produced, and their specificity was confirmed by antiserum preabsorption and immunohistochemical staining in the carp pituitary. Western blot using these antisera revealed that grass carp SLα and SLβ could be N-linked glycosylated and their basal secretion and cell content in carp pituitary cells could be elevated by IGF-I and -II treatment. These stimulatory effects occurred with parallel rises in SLα and SLβ mRNA levels, and these SL gene expression responses were not mimicked by insulin but blocked by IGF-I receptor inactivation. In carp pituitary cells, IGF-I and -II could induce rapid phosphorylation of IGF-I receptor, MEK1/2, ERK1/2, MKK3/6, and p38 MAPK; and SLα and SLβ secretion, protein production, and mRNA expression caused by IGF-I and -II stimulation were negated by inactivating MEK1/2 and p38 MAPK. Parallel inhibition of PI3K and Akt, however, were not effective in these regards. These results, taken together, provide evidence that IGF can upregulate SL secretion and synthesis at the pituitary level via stimulation of MAPK- but not PI3K/Akt-dependent pathways.

摘要

生长激素/泌乳素家族成员 Somatolactin (SL) 是鱼类模型中特有的垂体激素。尽管已知 SL 在鱼类中有多种功能,但调节其分泌和合成的机制尚未完全阐明。在这里,我们使用草鱼垂体细胞作为模型,研究了胰岛素样生长因子 (IGF) 在垂体水平对 SL 调节的作用。作为第一步,我们制备了两种在鲤鱼垂体中表达的 SL 同工型 (SLα 和 SLβ) 的抗血清,并通过在鲤鱼垂体中的抗血清预吸收和免疫组织化学染色证实了其特异性。使用这些抗血清进行的 Western blot 显示,草鱼 SLα 和 SLβ 可以进行 N-连接糖基化,IGF-I 和 -II 处理可以提高鲤鱼垂体细胞中 SLα 和 SLβ 的基础分泌和细胞含量。这些刺激作用伴随着 SLα 和 SLβ mRNA 水平的平行升高,而胰岛素不能模拟这些 SL 基因表达反应,但可被 IGF-I 受体失活所阻断。在鲤鱼垂体细胞中,IGF-I 和 -II 可以诱导 IGF-I 受体、MEK1/2、ERK1/2、MKK3/6 和 p38 MAPK 的快速磷酸化;并且 IGF-I 和 -II 刺激引起的 SLα 和 SLβ 分泌、蛋白产生和 mRNA 表达被 MEK1/2 和 p38 MAPK 的失活所否定。然而,平行抑制 PI3K 和 Akt 在这些方面没有效果。这些结果表明,IGF 可以通过刺激 MAPK-但不依赖于 PI3K/Akt 的途径来上调垂体水平的 SL 分泌和合成。

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