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 DESCRIPTION (provided by applicant): The main objective of this grant is to determine the mechanisms by which carboxypeptidase A1 (CPA1) mutations act as risk factors for chronic pancreatitis in humans. The majority of non-alcoholic cases of chronic pancreatitis develop on the basis of genetic susceptibility, driven by mutations in risk genes that encode digestive enzymes such as cationic trypsinogen (protease serine 1, PRSS1), the pancreatic secretory trypsin inhibitor (serine protease inhibitor Kazal type 1, SPINK1), chymotrypsin C (CTRC) or carboxypeptidase A1 (CPA1). Our studies in previous funding periods clearly defined a pathological pathway associated with increased intra-pancreatic trypsin activity as a result of mutations in PRSS1, SPINK1 and CTRC. Our more recent results on CPA1 mutations, however, indicate that not all genetic risk factors increase trypsin activity. The overarching hypothesis of the current grant is that mutation-induced misfolding and consequent endoplasmic reticulum (ER) stress are the fundamental mechanisms increasing pancreatitis risk in carriers of CPA1 mutations. To test this hypothesis, we will systematically study 28 CPA1 variants and demonstrate that pathogenic CPA1 variants suffer retention and degradation inside the cell with consequently diminished secretion and markedly increased ER stress. In contrast, neutral, non-pathogenic CPA1 variants are secreted normally and do not cause significant ER stress. Furthermore, to obtain insight into the in vivo effects of misfolding CPA1 mutants, we will study a novel knock-in mouse line harboring the human mutation p.N256K in the mouse Cpa1 gene. We expect that pancreatic expression of a misfolding Cpa1 mutant will cause ER stress with increased apoptosis and/or NFκB activation, and may elicit acute and/or chronic pancreatitis. Finally, we will demonstrate that expression of this misfolding Cpa1 mutant in the mouse pancreas sensitizes the pancreas to injury and consequent inflammation and increases pancreatitis responses in experimental models of acute and chronic pancreatitis. Successful completion of these specific aims will firmly establish that mutation-induced misfolding is a relevant disease-mechanism in human chronic pancreatitis and will provide complementary in vitro and in vivo evidence that ER stress and associated signaling pathways mediate increased pancreatitis risk.
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DOI: 10.1097/mpa.0b013e3182152fdf
发表时间: 2011-05
期刊: Pancreas
影响因子: 2.9
作者: [Joergensen MT, Geisz A, Brusgaard K, Schaffalitzky de Muckadell OB, Hegyi P, Gerdes AM, Sahin-Tóth M]
通讯作者: Sahin-Tóth M
DOI: 10.1038/s41467-018-07347-y
发表时间: 2018-11-28
期刊: Nature communications
影响因子: 16.6
作者: [Geisz A, Sahin-Tóth M]
通讯作者: Sahin-Tóth M
DOI: 10.1136/gut.2008.164947
发表时间: 2009-04
期刊: Gut
影响因子: 24.5
作者: [Kereszturi E, Király O, Sahin-Tóth M]
通讯作者: Sahin-Tóth M
Novel PRSS1 Mutation p.P17T Validates Pathogenic Relevance of CTRC-Mediated Processing of the Trypsinogen Activation Peptide in Chronic Pancreatitis.
新型 PRSS1 突变 p.P17T 验证了慢性胰腺炎中 CTRC 介导的胰蛋白酶原激活肽加工的致病相关性。
DOI: 10.1038/ajg.2017.393
发表时间: 2017
期刊: The American journal of gastroenterology
影响因子: --
作者: [Németh,BalázsCsaba, Szücs,Ákos, Hegyi,Péter, Sahin-Tóth,Miklós]
通讯作者: Sahin-Tóth,Miklós
共 19 条
    Trypsin-dependent mechanisms in pancreatitis
    Trypsin-dependent mechanisms in pancreatitis
    Digestive enzyme misfolding promotes alcoholic pancreatitis
    Pancreatic elastases
    • 批准号:
      8588922
    • 项目类别:
    • 资助金额:
      $35.6万
    • 财政年份:
      2013
    • 负责人:
      Miklos Sahin-Toth
    • 依托单位:
    海外基金