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      Relapsing Pancreatitis due to a Novel Compound Heterozygosity in the CFTR Gene Involving the Second Most Common Mutation in Central and Eastern Europe [CFTRdele2,3(21 kb)]

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          Abstract

          A 43-year-old otherwise healthy female patient presented with mild pancreatitis. Her family history revealed that her only son had cystic fibrosis. Genotyping of the patient demonstrated CFTR compound heterozygosity CFTRdele2,3(21 kb) and R117H and wild type alleles of the poly-T-tract in intron 8 (7T/7T). No mutations were detected in the cationic pancreatic trypsinogen (PRSS1) and the pancreatic secretory trypsinogen inhibitor (SPINK1) genes. CFTRdele2,3(21 kb) has only been described in 2000 and is the second most frequent severe CFTR mutation after ΔF508 in central and eastern Europe. This haplotype should be included in the genetic panel when evaluating patients of central or eastern European genetic background for possible CFTR related pancreatitis.

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          Most cited references10

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          SPINK1/PSTI polymorphisms act as disease modifiers in familial and idiopathic chronic pancreatitis.

          Gain-of-function trypsin mutations cause acute pancreatitis and chronic pancreatitis. Loss of trypsin inhibitor function may have similar effects. We investigated the prevalence of SPINK1 (PSTI) mutations in familial pancreatitis, idiopathic chronic pancreatitis, and controls. Genetic-linkage studies were performed in 5 familial pancreatitis families. The entire SPINK1 gene was sequenced in 112 affected individuals and 95 control DNA samples, and exon 3 was sequenced in 95 additional controls. X-ray crystallography-based model building and statistical studies were performed. Significant linkage between pancreatitis and 5q31.1-2 was excluded. Novel SPINK1 mutations, one D50E mutation, one IVS3+125 C>A, and five IVS3+184 T>A intronic polymorphisms were identified. The N34S and P55S mutations were observed in 29 of 112 patients (25%) as N34S/N34S (n = 7), N34S/wt (n = 19), N34S/P55S (n = 2), and N34S/D50E (n = 1). Three hundred eighty control alleles revealed 3 N34S (0.77%), 2 P55S (0.53%), and no D50E mutations. Age of disease onset and severity were similar between homozygous and heterozygous patients. Structural modeling revealed several possible pathophysiologic mechanisms for the N34S mutation. SPINK1 mutations are common in the population (approximately 2%), but are clearly associated with pancreatitis. The mutation-associated risk is low. Modeling and familial clustering suggest that SPINK1 mutations are disease modifying, possibly by lowering the threshold for pancreatitis from other genetic or environmental factors, but by themselves do not cause disease.
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            A mutation in CFTR produces different phenotypes depending on chromosomal background.

            Cystic fibrosis (CF) is caused by mutations in the CF transmembrane conductance regulator (CFTR) gene but the association between mutation (genotype) and disease presentation (phenotype) is not straightforward. We have been investigating whether variants in the CFTR gene that alter splicing efficiency of exon 9 can affect the phenotype produced by a mutation. A missense mutation, R117H, which has been observed in three phenotypes, was found to occur on two chromosome backgrounds with intron 8 variants that have profoundly different effects upon splicing efficiency. A close association is shown between chromosome background of the R117H mutation and phenotype. These findings demonstrate that the genetic context in which a mutation occurs can play a significant role in determining the type of illness produced.
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              Mutations in serine protease inhibitor Kazal type 1 are strongly associated with chronic pancreatitis.

              Although chronic pancreatitis is associated with risk factors such as alcoholism, hyperparathyroidism, and hypertriglyceridaemia, little is known of the actual aetiology of the disease. It is thought that inappropriate activation of trypsinogen causes pancreatitis, and indeed in cases of hereditary pancreatitis mutations of cationic trypsinogen (PRSS1) have been described. As serine protease inhibitor Kazal type 1 (SPINK1) is a potent natural inhibitor of pancreatic trypsin activity, we hypothesised that SPINK1 mutations would be more common than expected among an unselected cohort of adult chronic pancreatitis patients. To detect the prevalence of SPINK1 mutations in a cohort of chronic pancreatitis patients. DNA was isolated from a cohort of 115 adult patients with chronic pancreatitis of alcoholic (n=72), hereditary (n=10), idiopathic (n=24), and miscellaneous (n=9) origin. We performed mutational analysis for two PRSS1 mutations (R122H, N29I) and four specific SPINK1 gene mutations (M1T, L14P, N34S, P55S) and compared the results with a control group of 120 healthy Dutch subjects. In six of the 10 patients that fulfilled the criteria for hereditary pancreatitis, but in none of the control subjects, mutations in the PRSS1 gene were found. In 14 patients we detected a SPINK1 mutation. Eleven patients were heterozygous for the N34S mutation and sequencing confirmed the homozygous state of N34S in a brother and sister. Two patients carried the P55S mutation, one as a compound heterozygote with N34S. The M1T and L14P SPINK1 mutations were not found in our cohort. The N34S mutation was detected in only two of 120 controls, while the P55S, M1T, and L14P mutations were absent in the same group. Patients with the N34S allele had a later onset of disease than those with PRSS1 gene mutations but earlier onset compared with the mutation negative group. Identification of SPINK1 mutations in 12.2% of patients with adult alcoholic and idiopathic chronic pancreatitis suggests an important role for SPINK1 as a predisposing factor in adult chronic pancreatitis.
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                Author and article information

                Journal
                PAN
                Pancreatology
                10.1159/issn.1424-3903
                Pancreatology
                S. Karger AG
                1424-3903
                1424-3911
                2005
                April 2005
                19 April 2005
                : 5
                : 1
                : 92-96
                Affiliations
                a1st Medical Department, bDepartment of Medical Genetics, and cChildren’s Hospital, University of Tübingen, Tübingen, Germany
                Article
                84495 Pancreatology 2005;5:92–96
                10.1159/000084495
                15775704
                ff9b11bb-6452-4300-ae2e-8523ffbf6980
                © 2005 S. Karger AG, Basel and IAP

                Copyright: All rights reserved. No part of this publication may be translated into other languages, reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying, recording, microcopying, or by any information storage and retrieval system, without permission in writing from the publisher. Drug Dosage: The authors and the publisher have exerted every effort to ensure that drug selection and dosage set forth in this text are in accord with current recommendations and practice at the time of publication. However, in view of ongoing research, changes in government regulations, and the constant flow of information relating to drug therapy and drug reactions, the reader is urged to check the package insert for each drug for any changes in indications and dosage and for added warnings and precautions. This is particularly important when the recommended agent is a new and/or infrequently employed drug. Disclaimer: The statements, opinions and data contained in this publication are solely those of the individual authors and contributors and not of the publishers and the editor(s). The appearance of advertisements or/and product references in the publication is not a warranty, endorsement, or approval of the products or services advertised or of their effectiveness, quality or safety. The publisher and the editor(s) disclaim responsibility for any injury to persons or property resulting from any ideas, methods, instructions or products referred to in the content or advertisements.

                History
                : 02 July 2003
                : 20 February 2004
                Page count
                References: 17, Pages: 5
                Categories
                Case Report

                Oncology & Radiotherapy,Gastroenterology & Hepatology,Surgery,Nutrition & Dietetics,Internal medicine
                CFTRdele2,3(21 kb),CFTR compound heterozygosity,SPINK1,Pancreatic secretory trypsinogen inhibitor,R117H,Idiopathic pancreatitis,Cationic pancreatic trypsinogen,PRSS1

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