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本文引用的文献

1
Regulator of calcineurin 1 controls growth plasticity of adult pancreas.钙调神经磷酸酶1调节因子控制成年胰腺的生长可塑性。
Gastroenterology. 2010 Aug;139(2):609-19, 619.e1-6. doi: 10.1053/j.gastro.2010.04.050. Epub 2010 Jun 18.
2
Novel STAT3 phosphorylation inhibitors exhibit potent growth-suppressive activity in pancreatic and breast cancer cells.新型 STAT3 磷酸化抑制剂在胰腺癌细胞和乳腺癌细胞中表现出强大的生长抑制活性。
Cancer Res. 2010 Mar 15;70(6):2445-54. doi: 10.1158/0008-5472.CAN-09-2468. Epub 2010 Mar 9.
3
Adaptable functionality of transcriptional feedback in bacterial two-component systems.细菌双组分系统中转录反馈的适应性功能。
PLoS Comput Biol. 2010 Feb 12;6(2):e1000676. doi: 10.1371/journal.pcbi.1000676.
4
Beta-catenin blocks Kras-dependent reprogramming of acini into pancreatic cancer precursor lesions in mice.β-连环蛋白阻断 Kras 依赖性的小鼠腺泡重编程为胰腺癌前病变。
J Clin Invest. 2010 Feb;120(2):508-20. doi: 10.1172/JCI40045. Epub 2010 Jan 11.
5
Liver regeneration after partial hepatectomy: critical analysis of mechanistic dilemmas.部分肝切除术后的肝脏再生:对机制难题的批判性分析。
Am J Pathol. 2010 Jan;176(1):2-13. doi: 10.2353/ajpath.2010.090675. Epub 2009 Dec 17.
6
Cytokine/Jak/Stat signaling mediates regeneration and homeostasis in the Drosophila midgut.细胞因子/ Jak / Stat信号传导介导果蝇中肠的再生和内环境稳定。
Cell. 2009 Jun 26;137(7):1343-55. doi: 10.1016/j.cell.2009.05.014.
7
Cross-talk between calcineurin/NFAT and Jak/STAT signalling induces cardioprotective alphaB-crystallin gene expression in response to hypertrophic stimuli.钙调神经磷酸酶/NFAT 和 Jak/STAT 信号转导的串扰诱导心肌肥厚刺激反应性的心脏保护αB-晶体蛋白基因表达。
J Cell Mol Med. 2010 Jun;14(6B):1707-16. doi: 10.1111/j.1582-4934.2009.00804.x. Epub 2009 Jun 16.
8
Hormonal control of pancreatic growth during fetal, neonatal and adult life.胎儿期、新生儿期及成年期胰腺生长的激素调控
Adv Med Sci. 2008;53(2):99-118. doi: 10.2478/v10039-008-0029-5.
9
Evolutionarily conserved transcriptional co-expression guiding embryonic stem cell differentiation.指导胚胎干细胞分化的进化保守转录共表达
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10
Cholecystokinin activates pancreatic calcineurin-NFAT signaling in vitro and in vivo.胆囊收缩素在体外和体内均可激活胰腺钙调神经磷酸酶-NFAT信号通路。
Mol Biol Cell. 2008 Jan;19(1):198-206. doi: 10.1091/mbc.e07-05-0430. Epub 2007 Oct 31.

剖析 CCK 介导的胰腺生长:动态遗传程序和 STATs 作为潜在调节因子的作用。

Profiling CCK-mediated pancreatic growth: the dynamic genetic program and the role of STATs as potential regulators.

机构信息

Department of Molecular and Integrative Physiology, University of Michigan Medical School, Ann Arbor, Michigan 48109-0622, USA.

出版信息

Physiol Genomics. 2012 Jan 18;44(1):14-24. doi: 10.1152/physiolgenomics.00255.2010. Epub 2011 Oct 18.

DOI:10.1152/physiolgenomics.00255.2010
PMID:22010007
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3289124/
Abstract

Feeding mice with protease inhibitor (PI) leads to increased endogenous cholecystokinin (CCK) release and results in pancreatic growth. This adaptive response requires calcineurin (CN)-NFAT and AKT-mTOR pathways, but the genes involved, the dynamics of their expression, and other regulatory pathways remain unknown. Here, we examined the early (1-8 h) transcriptional program that underlies pancreatic growth. We found 314 upregulated and 219 downregulated genes with diverse temporal and functional profiles. Several new identifications include the following: stress response genes Gdf15 and Txnip, metabolic mediators Pitpnc1 and Hmges2, as well as components of growth factor response Fgf21, Atf3, and Egr1. The genes fell into seven self-organizing clusters, each with a distinct pattern of expression; a representative gene within each of the upregulated clusters (Egr1, Gadd45b, Rgs2, and Serpinb1a) was validated by qRT-PCR. Genes up at any point throughout the time course and CN-dependent genes were subjected to further bioinformatics-based networking and promoter analysis, yielding STATs as potential transcriptional regulators. As shown by PCR, qPCR, and Western blots, the active phospho-form of STAT3 and the Jak-STAT feedback inhibitor Socs2 were both increased throughout early pancreatic growth. Moreover, immunohistochemistry showed a CCK-dependent and acinar cell-specific increase in nuclear localization of p-STAT3, with >75% nuclear occupancy in PI-fed mice vs. <0.1% in controls. Thus, the study identified novel genes likely to be important for CCK-driven pancreatic growth, characterized and biologically validated the dynamic pattern of their expression and investigated STAT-Socs signaling as a new player in this trophic response.

摘要

给老鼠喂食蛋白酶抑制剂 (PI) 会导致内源性胆囊收缩素 (CCK) 释放增加,从而导致胰腺生长。这种适应性反应需要钙调神经磷酸酶 (CN)-NFAT 和 AKT-mTOR 途径,但涉及的基因、它们表达的动态以及其他调节途径尚不清楚。在这里,我们研究了胰腺生长所依赖的早期(1-8 小时)转录程序。我们发现 314 个上调基因和 219 个下调基因,具有不同的时间和功能特征。一些新的鉴定包括以下内容:应激反应基因 Gdf15 和 Txnip、代谢调节剂 Pitpnc1 和 Hmges2,以及生长因子反应 Fgf21、Atf3 和 Egr1 的成分。这些基因分为七个自组织簇,每个簇都有独特的表达模式;上调簇中每个簇的代表性基因(Egr1、Gadd45b、Rgs2 和 Serpinb1a)都通过 qRT-PCR 进行了验证。在整个时间过程中上调的基因和 CN 依赖性基因进一步进行基于生物信息学的网络和启动子分析,结果表明 STATs 可能是潜在的转录调节剂。如 PCR、qPCR 和 Western blot 所示,整个早期胰腺生长过程中,STAT3 的活性磷酸化形式和 Jak-STAT 反馈抑制剂 Socs2 都增加了。此外,免疫组织化学显示 CCK 依赖性和腺泡细胞特异性的 p-STAT3 核定位增加,PI 喂养的小鼠中核占有率>75%,而对照组中<0.1%。因此,该研究鉴定了可能对 CCK 驱动的胰腺生长很重要的新基因,对其表达的动态模式进行了描述和生物学验证,并研究了 STAT-Socs 信号作为这种营养反应的新参与者。