首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Hepatic to pancreatic switch defines a role for hemostatic factors in cellular plasticity in mice
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Hepatic to pancreatic switch defines a role for hemostatic factors in cellular plasticity in mice

机译:肝到胰腺的转换定义了止血因子在小鼠细胞可塑性中的作用

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In multiple systems, impaired proteolysis associated with the loss of the hemostatic factor plasminogen (Pig) results in fibrin-dependent defects in tissue repair. However, repair within the liver is known to be defective in Pig-deficient (Plg°) mice independent of fibrin clearance and appears to be compromised in part by the poor clearance of necrotic cells. Based on these findings, we examined the hepatic transcriptome after injury in search of transcriptional programs that are sensitive to the Plg/fibrinogen system. To this end, we generated biotinylated cRNA pools from livers of Plg° mice and controls before and after a single dose of the hepatotoxin carbon tetrachloride and hybridized them against high-density oligonucleotide arrays. Analysis of the gene expression platform identified an unexpected transcriptional signature within challenged livers of Plg° mice for pancreatic gene products, including trypsinogen-2, amylase-2, elastase-1, elastase-2, and cholesteryl-ester lipase. Validation studies found that this transcriptional program also contained products of the endocrine pancreas (Reg-1 and insulin genes) and the expression of the pancreatic transcription factors p48 and PDX-1. By using a iacZ transgene to trace the cellular source of pancreatic gene expression, we found that PDX-1 was expressed in albumin-positive cells that were morphologically indistinguishable from hepatocytes, and in albumin-negative epi-thelioid cells within zones of pericentral injury. More detailed studies revealed that the mechanisms of heterotopic gene expression in Plg° mice required fibrin(ogen). Collectively, these data reveal a regulatory role for the hemostatic factors plasmin(ogen) and fibrin(ogen) in cellular plasticity within adult tissues of the digestive system.
机译:在多个系统中,与止血因子纤溶酶原(Pig)丢失相关的蛋白水解受损会导致组织修复中纤维蛋白依赖性缺陷。但是,已知在猪缺陷(Plg°)小鼠中,与纤维蛋白清除率无关,肝脏内的修复是有缺陷的,并且似乎由于坏死细胞清除率低而受到损害。基于这些发现,我们检查了损伤后的肝转录组,以寻找对Plg /纤维蛋白原系统敏感的转录程序。为此,我们在单剂量肝毒素四氯化碳之前和之后从Plg°小鼠和对照的肝脏中生成了生物素化的cRNA库,并将它们与高密度寡核苷酸阵列杂交。对基因表达平台的分析发现,在胰高血糖素(Plg°)小鼠的受攻击肝脏中,胰腺基因产物包括胰蛋白酶原2,淀粉酶2,弹性蛋白酶1,弹性蛋白酶2和胆固醇酯脂肪酶具有意想不到的转录特征。验证研究发现,该转录程序还包含内分泌胰腺的产物(Reg-1和胰岛素基因)以及胰腺转录因子p48和PDX-1的表达。通过使用iacZ转基因追踪胰腺基因表达的细胞来源,我们发现PDX-1在形态学上与肝细胞没有区别的白蛋白阳性细胞中以及在中央周围损伤区域内的白蛋白阴性上皮样细胞中表达。更详细的研究表明,在Plg°小鼠中异位基因表达的机制需要纤维蛋白(基因)。总体而言,这些数据揭示了止血因子纤溶酶(原)和纤维蛋白(原)在消化系统成年组织内的细胞可塑性中的调节作用。

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