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miR27a 是一种微调分子,通过靶向 STAT5 与生长激素 (GH) 信号和鸟氨酸脱羧酶 (ODC) 相互作用。

miR27a, a fine-tuning molecule, interacts with growth hormone (GH) signaling and ornithine decarboxylase (ODC) via targeting STAT5.

机构信息

Department of Molecular Biology and Genetics, Engineering and Natural Sciences Faculty, Biruni University, Topkapı Campus, 34010, Istanbul, Turkey.

Department of Molecular Biology and Genetics, Science and Letters Faculty, Istanbul Kultur University, Atakoy Campus, 34156, Istanbul, Turkey.

出版信息

Amino Acids. 2022 Jan;54(1):71-84. doi: 10.1007/s00726-021-03101-9. Epub 2021 Nov 26.

Abstract

Autocrine growth hormone (GH) expression triggers cell proliferation, invasion-metastasis in vitro and in vivo models, but GH gene mutations inhibit postnatal growth. Natural polyamines (PA); putrescine, spermidine, spermine trigger cell growth and differentiation. The importance of miR27a has shown to exert a suppressive effect on ornithine decarboxylase (ODC) expression in dwarf mice models. We aimed to modulate the role of A13S, F166Δ, T24 GH gene mutations' impact on PA metabolism and epithelial-mesencyhmal transition (EMT) pathway through miR27a. Biologically active GH signaling triggered cell viability, growth, and colony formation, but T24A alteration significantly decreases aggressive profiles due to inactive GH signaling through a decline in STAT5 activity and expressions of STAT5, c-myc and ODC. Although statistically significant increase in intracellular PA levels in wt GH signaling HEK293 cells compared to HEK293 cells with a lack of GH signaling, a sharp decline in PA levels measured in each mutant GH expressing HEK293 cells. When we inhibited miR27a, proliferation and colony formation accelerated through a significant increase in putrescine levels and upregulation of ODC, STAT5 expression. In contrast, a substantial decline in GH-mediated colony enlargement observed via ODC, STAT5 downregulation, and PA depletion in both wt and mutant GH expressing HEK293 cell lines by miR27a mimic transfection. In conclusion, T24A mutant GH expression declines the GH signaling through STAT5 activity, and mutant GH signaling decreased cell proliferation, division, and colony formation via EMT inhibition. The autocrine GH-mediated proliferative profiles were under the control of miR27a that depletes intracellular putrescine levels via targeting ODC.

摘要

自分泌生长激素 (GH) 的表达会触发细胞在体外和体内模型中的增殖、侵袭和转移,但 GH 基因突变会抑制出生后的生长。天然多胺(PA);腐胺、精脒、精胺会触发细胞生长和分化。miR27a 的重要性已表明对矮小鼠模型中的鸟氨酸脱羧酶 (ODC) 表达具有抑制作用。我们旨在通过 miR27a 调节 A13S、F166Δ、T24 GH 基因突变对 PA 代谢和上皮间质转化(EMT)途径的影响。生物活性 GH 信号触发细胞活力、生长和集落形成,但 T24A 改变由于 GH 信号的失活通过降低 STAT5 活性和 STAT5、c-myc 和 ODC 的表达而显著降低侵袭性特征。尽管 wt GH 信号转导 HEK293 细胞中的细胞内 PA 水平与缺乏 GH 信号转导的 HEK293 细胞相比有统计学意义上的增加,但在每个突变 GH 表达 HEK293 细胞中 PA 水平都明显下降。当我们抑制 miR27a 时,增殖和集落形成加速,腐胺水平显著增加,ODC 和 STAT5 表达上调。相比之下,在 wt 和突变 GH 表达 HEK293 细胞系中,通过 miR27a 模拟转染观察到 GH 介导的集落增大显著减少,这是通过 ODC、STAT5 下调和 PA 耗竭观察到的。总之,T24A 突变 GH 表达通过 STAT5 活性降低 GH 信号转导,突变 GH 信号转导通过 EMT 抑制降低细胞增殖、分裂和集落形成。自分泌 GH 介导的增殖表型受 miR27a 控制,miR27a 通过靶向 ODC 耗尽细胞内腐胺水平。

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