期刊文献+

Screening analysis of candidate gene mutations in a kindred with polycystic liver disease

Screening analysis of candidate gene mutations in a kindred with polycystic liver disease
下载PDF
导出
摘要 AIM:To find potential mutable sites by detecting mutations of the candidate gene in a kindred with polycystic liver disease(PCLD).METHODS:First,we chose a kindred with PCLD and obtained five venous blood samples of this kindred after the family members signed the informed consent form.In the kindred two cases were diagnosed with PCLD,and the left three cases were normal individuals.All the blood samples were preserved at-85?℃.Second,we extracted the genomic DNA from the venous blood samples of the kindred using a QIAamp DNA Mini Kit and then performed long-range polymerase chain reaction(PCR)with different primers.The exons of PKD1 were all sequenced with the forward and reverse primers to ensure the accuracy of the results.Next,we purified the PCR products and directly sequenced them using Big Dye Terminator Chemistry version 3.1.The sequencing reaction was conducted with Biomek FX(Beckman).Finally,we analyzed the results.RESULTS:A total of 42 normal exons were identified in detecting mutations of the PKD1 gene.A synonymous mutation occurred in exon 5.The mutation was a homozygous T in the proband and was C in the reference sequence.This mutation was located in the third codon and did not change the amino acid encoded by the codon.Missense mutations occurred in exons 11 and 35.These mutations were located in the second codon;they changed the amino acid sequence and existed in the db SNP library.A nonsense mutation occurred in exon 15.The mutation was a heterozygous CT in the proband and was C in the referencesequence.This mutation was located in the first codon and resulted in a termination codon.This mutation had an obvious influence on the encoded protein and changed the length of the protein from 4303 to 2246amino acids.This was a new mutation that was not present in the db SNP library.CONCLUSION:The nonsense mutation of exon 15existed in the proband and in the third individual.Additionally,the proband was heterozygous for this mutation,so the mutable site was a pathogenic mutation. AIM:To find potential mutable sites by detecting mutations of the candidate gene in a kindred with polycystic liver disease(PCLD).METHODS:First,we chose a kindred with PCLD and obtained five venous blood samples of this kindred after the family members signed the informed consent form.In the kindred two cases were diagnosed with PCLD,and the left three cases were normal individuals.All the blood samples were preserved at-85?℃.Second,we extracted the genomic DNA from the venous blood samples of the kindred using a QIAamp DNA Mini Kit and then performed long-range polymerase chain reaction(PCR)with different primers.The exons of PKD1 were all sequenced with the forward and reverse primers to ensure the accuracy of the results.Next,we purified the PCR products and directly sequenced them using Big Dye Terminator Chemistry version 3.1.The sequencing reaction was conducted with Biomek FX(Beckman).Finally,we analyzed the results.RESULTS:A total of 42 normal exons were identified in detecting mutations of the PKD1 gene.A synonymous mutation occurred in exon 5.The mutation was a homozygous T in the proband and was C in the reference sequence.This mutation was located in the third codon and did not change the amino acid encoded by the codon.Missense mutations occurred in exons 11 and 35.These mutations were located in the second codon;they changed the amino acid sequence and existed in the db SNP library.A nonsense mutation occurred in exon 15.The mutation was a heterozygous CT in the proband and was C in the referencesequence.This mutation was located in the first codon and resulted in a termination codon.This mutation had an obvious influence on the encoded protein and changed the length of the protein from 4303 to 2246amino acids.This was a new mutation that was not present in the db SNP library.CONCLUSION:The nonsense mutation of exon 15existed in the proband and in the third individual.Additionally,the proband was heterozygous for this mutation,so the mutable site was a pathogenic mutation.
出处 《World Journal of Gastroenterology》 SCIE CAS 2015年第8期2343-2351,共9页 世界胃肠病学杂志(英文版)
基金 Supported by Grants from Science and Technology Projects of the Medicine and Health of Shandong Province,No.2013WS0362 the Natural Science Foundation of Shandong Province of China,No.30810403081 the Department of Science and Technology of Shandong Province of China,No.2011GGC03085
关键词 Gene MUTATION POLYCYSTIC LIVER DISEASE KINDRED Gene mutation Polycystic liver disease Kindred
  • 相关文献

参考文献20

  • 1Ying-Cai Tan,Alber Michaeel,Jon Blumenfeld,Stephanie Donahue,Tom Parker,Daniel Levine,Hanna Rennert.A Novel Long-Range PCR Sequencing Method for Genetic Analysis of the Entire PKD1 Gene[J]. The Journal of Molecular Diagnostics . 2012 (4)
  • 2Carlo Spirli,Stefano Okolicsanyi,Romina Fiorotto,Luca Fabris,Massimiliano Cadamuro,Silvia Lecchi,Xin Tian,Stefan Somlo,Mario Strazzabosco.ERK1/2-Dependent Vascular Endothelial Growth Factor Signaling Sustains Cyst Growth in Polycystin-2 Defective Mice[J]. Gastroenterology . 2010 (1)
  • 3Alessia Torrice,Vincenzo Cardinale,Manuela Gatto,Rossella Semeraro,Cristina Napoli,Paolo Onori,Gianfranco Alpini,Eugenio Gaudio,Domenico Alvaro.Polycystins play a key role in the modulation of cholangiocyte proliferation[J]. Digestive and Liver Disease . 2009 (5)
  • 4Tatyana Masyuk,Anatoliy Masyuk,Nicholas LaRusso.Cholangiociliopathies: genetics, molecular mechanisms and potential therapies[J]. Current Opinion in Gastroenterology . 2009 (3)
  • 5Gregory T. Everson,Matthew R. G. Taylor.Management of polycystic liver disease[J]. Current Gastroenterology Reports . 2005 (1)
  • 6Joost P.H. Drenth,Jose A. Martina,Rolf van de Kerkhof,Juan S. Bonifacino,Jan B.M.J. Jansen.Polycystic liver disease is a disorder of cotranslational protein processing[J]. Trends in Molecular Medicine . 2004 (1)
  • 7Joost P.H. Drenth,Jose A. Martina,Rene H.M. Te Morsche,Jan B.M.J. Jansen,Juan S. Bonifacino.Molecular characterization of hepatocystin, the protein that is defective in autosomal dominant polycystic liver disease[J]. Gastroenterology . 2004 (7)
  • 8Helle A Praetorius,Kenneth R Spring.The renal cell primary cilium functions as a flow sensor[J]. Current Opinion in Nephrology and Hypertension . 2003 (5)
  • 9Airong Li,Sonia Davila,Laszlo Furu,Qi Qian,Xin Tian,Patrick S. Kamath,Bernard F. King,Vicente E. Torres,Stefan Somlo.Mutations in PRKCSH Cause Isolated Autosomal Dominant Polycystic Liver Disease[J]. The American Journal of Human Genetics . 2003 (3)
  • 10York Pei.A ‘two-hit’ model of cystogenesis in autosomal dominant polycystic kidney disease?[J]. Trends in Molecular Medicine . 2001 (4)

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部