1.Genetic analysis of two Chinese pedigrees affected with Hereditary hypofibrinemia due to missense variants.
Xiaoyong ZHENG ; Yi CHEN ; Mengzhen WEN ; Yanhui JIN ; Manlin ZENG ; Kaiqi JIA ; Yuan CHEN ; Mingshan WANG ; Lihong YANG
Chinese Journal of Medical Genetics 2023;40(3):276-281
OBJECTIVE:
To retrospectively analyze the clinical phenotypes and genetic variants in two Chinese pedigrees affected with Hereditary hypofibrinemia (IFD) and explore their molecular pathogenesis.
METHODS:
Two probands and their pedigree members were admitted to the First Affiliated Hospital of Wenzhou Medical University on March 30, 2021 and May 27, 2021, respectively. Clinical phenotypes of the probands were collected, and blood clotting indexes of the probands and their pedigree members were determined. Variants of the FGA, FGB and FGG genes were analyzed by Sanger sequencing, and candidate variants were verified by sequence comparison. Bioinformatic software was used to analyze the conservation of the amino acids and pathogenicity of the proteins. Alteration in protein structure and intermolecular force before and after the variant was analyzed by simulating the protein model.
RESULTS:
Proband 1, a 18-year-old male, had significantly low plasma fibrinogen activity (Fg:C) and plasma fibrinogen antigen (Fg:Ag), respectively at 0.80 g/L and 1.00 g/L. Proband 2, a 43-year-old male, had slightly low Fg:C and Fg:Ag at 1.35 g/L and 1.30 g/L, respectively. The Fg:C and Fg:Ag of proband 1's father, proband 2's father and son were also below the normal level. Genetic testing showed that proband 1 had harbored a heterozygous missense variant of c.688T>G (p.Phe230Val) in exon 7 of the FGG gene, which was inherited from his father. Proband 2, his father and son all had harbored a heterozygous variant of c.2516A>C (p.Asn839Thr) in exon 6 of the FGA gene. Homology analysis showed that the Phe230 and Asn839 residues were highly conserved among homologous species. Bioinformatic analysis predicted that both p.Phe230Val and p.Asn839Thr were pathogenic variants.
CONCLUSION
Analysis of protein simulation model showed that the p.Asn839Thr variant has changed the hydrogen bo`nd between the amino acids, thus affecting the stability of the protein structure. The heterozygous missense variants of p.Phe230Val and p.Asn839Thr probably underlay the IFD in the two pedigrees.
Humans
;
Male
;
Amino Acids
;
East Asian People
;
Exons
;
Pedigree
;
Retrospective Studies
;
Afibrinogenemia/genetics*
;
Mutation, Missense
;
Fibrinogen/genetics*
2.Phenotype and genotype analyses of two pedigrees with inherited fibrinogen deficiency.
Kai Qi JIA ; Zheng Xian SU ; Hui Lin CHEN ; Xiao Yong ZHENG ; Man Lin ZENG ; Ke ZHANG ; Long Ying YE ; Li hong YANG ; Yan Hui JIN ; Ming Shan WANG
Chinese Journal of Hematology 2023;44(11):930-935
Objective: To analyze the phenotype and genotype of two pedigrees with inherited fibrinogen (Fg) deficiency caused by two heterozygous mutations. We also preliminarily probed the molecular pathogenesis. Methods: The prothrombin time (PT), activated partial thromboplastin time (APTT), thrombin time (TT) and plasma fibrinogen activity (Fg∶C) of all family members (nine people across three generations and three people across two generations) were measured by the clotting method. Fibrinogen antigen (Fg:Ag) was measured by immunoturbidimetry. Direct DNA sequencing was performed to analyze all exons, flanking sequences, and mutated sites of FGA, FGB, and FGG for all members. Thrombin-catalyzed fibrinogen polymerization was performed. ClustalX 2.1 software was used to analyze the conservatism of the mutated sites. MutationTaster, PolyPhen-2, PROVEAN, SIFT, and LRT online bioinformatics software were applied to predict pathogenicity. Swiss PDB Viewer 4.0.1 was used to analyze the changes in protein spatial structure and molecular forces before and after mutation. Results: The Fg∶C of two probands decreased (1.28 g/L and 0.98 g/L, respectively). The Fg∶Ag of proband 1 was in the normal range of 2.20 g/L, while it was decreased to 1.01 g/L in proband 2. Through genetic analysis, we identified a heterozygous missense mutation (c.293C>A; p.BβAla98Asp) in exon 2 of proband 1 and a heterozygous nonsense mutation (c.1418C>G; p.BβSer473*) in exon 8 of proband 2. The conservatism analysis revealed that Ala98 and Ser473 presented different conservative states among homologous species. Online bioinformatics software predicted that p.BβAla98Asp and p.BβSer473* were pathogenic. Protein models demonstrated that the p.BβAla98Asp mutation influenced hydrogen bonds between amino acids, and the p.BβSer473* mutation resulted in protein truncation. Conclusion: The dysfibrinogenemia of proband 1 and the hypofibrinogenemia of proband 2 appeared to be related to the p.BβAla98Asp heterozygous missense mutation and the p.BβSer473* heterozygous nonsense mutation, respectively. This is the first ever report of these mutations.
Humans
;
Afibrinogenemia/genetics*
;
Codon, Nonsense
;
Pedigree
;
Phenotype
;
Fibrinogen/genetics*
;
Genotype
3.Genetic analysis of a Chinese pedigree affected with Congenital dysfibrinogenemia due to variant of FGG gene.
Xiuru SHAO ; Jun MA ; Zhiguo WANG ; Mingyan SUN ; Zhan HUANG ; Zhao JIANG ; Xiaojuan LIU ; Si LI ; Yu LIU
Chinese Journal of Medical Genetics 2023;40(11):1324-1329
OBJECTIVE:
To explore the coagulation deficit and genetic basis for a Chinese pedigree affected with Congenital dysfibrinogenemia (CD).
METHODS:
Peripheral venous blood samples of the proband and her family members (including 4 individuals from three generations) were subjected to routine blood test and assays of liver and kidney functions and viral hepatitis to exclude related diseases. Clauss method and DFg-PT method were used to determine the fibrinogen activity (Fg:C), and an immunoturbidimetric assay was used to determine the level of fibrinogen antigen (Fg:Ag). All of the exons (22 in total) and their flanking sequences of the FGA, FGB and FGG genes were amplified by PCR and directly sequenced. Variants in the coding regions of the three genes and transcriptional splicing sites were screened by using Mutation SurveyorTM software.
RESULTS:
The Clauss method showed that Fg:C was significantly reduced in the proband and her father, whilst her mother and son were normal. With the DFg-PT method, the proband, her parents and son were all within the normal range. The Fg:C/Fg:Ag ratio of the proband and her father was lower than 0.7, whilst her mother and son were above 0.7. No significant change in the prothrombin time, activated partial thromboplastin clotting time and thrombin time was noted. Two genetic variants were detected, which included a homozygous missense variant in the FGA gene [c.991A>G (p.Thr331Ala)], which was predicted to be benign, and a heterozygous missense variant of the γ chain of the FGG gene [c.1211C>G (p.Ser404Phe)], which is located in a conserved region and unreported in the CLINVAR/HGMD/EXAC/1000G databases and literature.
CONCLUSION
This pedigree has conformed to the autosomal dominant inheritance of CD. The c.1211C>T (p.Ser404Phe) missense variant of the γ chain of the FGG gene probably underlay the pathogenesis of CD in this pedigree. The variant was unreported previously and named as "Fibrinogen Harbin II Ser404Phe".
Female
;
Humans
;
Afibrinogenemia/congenital*
;
East Asian People
;
Fibrinogen/genetics*
;
Mothers
;
Mutation
;
Pedigree
4.A Family with Congenital Dysfibrinogenemia and Blood Transfusion.
Xiang-Cheng LIAO ; Shan-Shan ZHANG ; Zi-Ji YANG ; Chun-Li ZHU ; Hui-Ni HUANG ; Rui-Xian LUO ; Si-Na LI ; Hui-Qiong XIE ; Hai-Lan LI ; Zhu-Ning MO
Journal of Experimental Hematology 2023;31(5):1469-1474
OBJECTIVE:
To investigate a family with congenital dysfibrinogenemia, and analyze the risk of hemorrhage and thrombosis and blood transfusion strategies.
METHODS:
Prothrombin time (PT), activated partial thromboplastin time (APTT) and thrombin time (TT) of the proband and her family members were detected by automatic coagulometer, fibrinogen (Fg) activity and antigen were detected by Clauss method and PT algorithm respectively. Meanwhile, thromboelastometry was analyzed for proband and her family members. Then, peripheral blood samples of the proband and her family members were collected, and all exons of FGA, FGB and FGG and their flanks were amplified by PCR and sequenced to search for gene mutations.
RESULTS:
The proband had normal APTT and PT, slightly prolonged TT, reduced level of Fg activity (Clauss method). The Fg of the proband's aunt, son and daughter all decreased to varying degrees. The results of thromboelastogram indicated that Fg function of the proband and her family members (except her son) was basically normal. Gene analysis showed that there were 6233 G/A (p.AαArg35His) heterozygous mutations in exon 2 of FGA gene in the proband, her children and aunt. In addition, 2 polymorphic loci were found in the family, they were FGA gene g.9308A/G (p.AαThr331Ala) and FGB gene g.12628G/A (p.BβArg478Iys) polymorphism, respectively. The proband was injected with 10 units of cryoprecipitate 2 hours before delivery to prevent bleeding, and no obvious bleeding occurred during and after delivery.
CONCLUSION
Heterozygous mutation of 6233G/A (p.AαArg35His) of FGA gene is the biogenetic basis of the disease in this family with congenital dysfibrinogenemia.
Humans
;
Child
;
Female
;
Fibrinogen/genetics*
;
Pedigree
;
Afibrinogenemia/genetics*
;
Mutation
;
Blood Transfusion
5.Congenital Fibrinogen Deficiency Caused by Novel FGG Gene Mutation.
Tian-Tian WANG ; Jing-Ru SHAO ; Jie WANG ; Yan CHENG ; Xue-Qin ZHANG ; Yun-Hai FANG ; Cheng-Fang YAO ; Xin-Sheng ZHANG
Journal of Experimental Hematology 2021;29(2):586-590
OBJECTIVE:
To detect and analyze coagulation related indexes and genotypes of a patient with congenital fibrinogen deficiency and his family members, and to investigate the possible molecular pathogenesis.
METHODS:
Four peripheral blood samples (proband and 3 family members) were collected and the prothrombin time (PT), activated partial thromboplastin time (APTT), thrombin time (TT), fibrinogen (Fg), D-Dimer and eight coagulation factor indicators were detected. All exons and flanking sequences of the FGA, FGB, and FGG genes encoding the three peptide chains of fibrinogen were sequenced and analyzed by bioinformatics.
RESULTS:
Among the eight coagulation factors of the proband and the elder sister, F Ⅴ and F Ⅷ were slightly higher, TT was significantly prolonged, and Fg was significantly reduced. Sequencing results showed that c.901C>T heterozygous mutation existed in the FGG gene. Bioinformatics analysis showed that the mutation changed the original protein structure and reduced the number of hydrogen bonds.
CONCLUSION
The fibrinogen gamma chain c.901C>T heterozygous mutation is the main cause of congenital fibrinogen deficiency in this family. This mutation is reported for the first time at home and abroad.
Afibrinogenemia/genetics*
;
Aged
;
Fibrinogen/genetics*
;
Heterozygote
;
Humans
;
Mutation
;
Pedigree
6.A case of inherited afibrinogenemia caused by an IVS7-12A>G splice mutation of FGG gene.
Xiaoou WANG ; Xiao YANG ; Jinle WANG ; Kuangyi SHU ; Fanfan LI ; Wei YANG ; Jichen RUAN ; Shishi WANG ; Minghua JIANG
Chinese Journal of Medical Genetics 2020;37(12):1391-1394
OBJECTIVE:
To explore the genetic basis for a Chinese pedigree affected with inherited afibrinogenemia.
METHODS:
For the proband and his family members, prothrombin time (PT), activated partial thromboplastin time (APTT), thrombin time (TT), Fibrin(ogen) degradation products (FDPs), D-dimer (D-D), plasminogen activity (PLG:A) and the TT mixed experiment with protamine sulfate were determined with a STAGO-R automatic coagulation analyzer. The activity and antigen of fibrinogen (Fg) in plasma were measured with the Clauss method and immunonephelometry method, respectively. All exons and flanking regions of the fibrinogen genes (FGA, FGB and FGG) were amplified by PCR and directly sequenced. Human Splicing Finder software was used to predict and score the change of splicing site caused by the mutation.
RESULTS:
The proband showed normal FDPs and D-D but significantly prolonged TT, PT and APTT. The activity and antigen of fibrinogen in plasma were significantly decreased (<0.1 g/L). His young sister and parents showed slightly prolonged TT (18.20-18.50 s) and decreased fibrinogen activity (1.27-1.54 g/L) and fibrinogen antigenic content (1.34-1.56 g/L). Genetic testing revealed that the proband has carried homozygous IVS7-12A>G (g.4147A>G) mutations of the FGG gene, for which his parents and young sister were heterozygous. As predicted by Human Splicing Finder and Mutation Taster software, the variant may generate a new splicing site which can extend the sequence of exon 7 by 11 bp, with alteration of the coding sequence. PROVEAN suggested the variant to be deleterious.
CONCLUSION
The afibrinogenemia of the proband may be attributed to the FGG IVS7-12A>G variant, which was unreported previously.
Adult
;
Afibrinogenemia/genetics*
;
Female
;
Fibrinogen/genetics*
;
Heterozygote
;
Humans
;
Male
;
Mutation
;
Pedigree
7.Analysis of a pedigree affected with congenital dysfibrinogenemia due to a novel Gly31Glu mutation of FGA gene.
Xiaoou WANG ; Xiao YANG ; Wei YANG ; Kuangyi SHU ; Fanfan LI ; Jie LIU ; Zhaohua ZHANG ; Shanshan LI ; Minghua JIANG
Chinese Journal of Medical Genetics 2019;36(9):901-904
OBJECTIVE:
To analyze the phenotype and genotype of a pedigree affected with congenital dysfibrinogenemia.
METHODS:
Liver and kidney functions of the proband and her relatives were determined. Coagulation tests including prothrombin time (PT), activated partial thromboplastin time (APTT) and thrombin time(TT), fibrin(ogen) degradation products (FDPs), D-dimer(D-D) and the calibration experiment of protamine sulfate of against plasma TT were detected in the proband and her predigree members. The activity and antigen of fibrinogen (Fg) in plasma were measured by Clauss method and immunonephelometry method, respectively. All of the exons and exons-intron boundaries of the three fibrinogen genes (FGA, FGB and FGG) were subjected to PCR amplification and Sanger sequencing. Potential influence of the suspected mutations were analyzed with bioinformatics software including PolyPhen-2, SIFT and Mutation Taster.
RESULTS:
The proband had normal PT, APTT, FDPs, D-D and prolonged TT (31.8 s). The activity of fibrinogen (Fg) in plasma was significantly decreased but the antigen was normal. Genetic analysis revealed a heterozygous c.92G>A (p.Gly31Glu) mutation in exon 2 of the FGA gene. Family studies revealed that the mother carried the same mutation. Bioinformatic analysis suggested that the mutation may affect the function of Fg Protein.
CONCLUSION
The dysfibrinogenemia was probably caused by the novel Gly31Glu mutation of the FGA gene.
Afibrinogenemia
;
congenital
;
genetics
;
DNA Mutational Analysis
;
Female
;
Fibrinogen
;
genetics
;
Humans
;
Mutation
;
Pedigree
;
Phenotype
8.Mutation analysis of a FGG gene causing hereditary abnormal fibrinogen.
Liya JIANG ; Qiaohong ZHANG ; Wanping XU ; Yongjun ZHANG
Chinese Journal of Medical Genetics 2018;35(6):812-814
OBJECTIVE:
To study the clinical phenotype and gene mutation analysis of a hereditary abnormal fibrinogenemia family and explore its molecular pathogenesis.
METHODS:
The STA-R automatic hemagglutination analyzer to detect the proband and its family members (3 generations of 5 people) of prothrombin time(PT), activated partial thromboplastin time (APTT), thrombin time (TT), fibrinogen activity (Fg: C), D-dimer (D-D), fibrinogen and fibrin degradation products (FDPs), plasminogen activity (PLG: A); The plasma levels of Fg: C and fibrinogen (Fg: Ag) were measured by Clauss method and immunoturbidimetry respectively. All exons and flanking sequences of FGA, FGB and FGG genes of fibrinogen were amplified by PCR, and the PCR products were purified and sequenced for gene analysis. The model was analyzed by Swiss software.
RESULTS:
The PT and APTT of the proband, her mother and sister were slightly prolonged, TT was significantly extend, Fg: C decreased significantly, Fg: Ag, PLG: A, D-D and FDPs are within the normal range; Her brother and daughter of the results are normal. Genetic analysis showed that g.7476 G>A heterozygous missense mutation in exon 8 of FGG gene resulted in mutations in arginine at position 275 of fibrinogen gamma D domain to histidine (Arg275His). Her mother and sister have the same Arg275His heterozygous mutation, brother and daughter for the normal wild type.
CONCLUSION
The heterozygous missense mutation of FGG gene Arg275His in patients with hereditary dysfibrinogenemia is associated with a decrease in plasma fibrinogen activity.
Afibrinogenemia
;
genetics
;
DNA Mutational Analysis
;
Female
;
Fibrinogen
;
genetics
;
Fibrinogens, Abnormal
;
genetics
;
Humans
;
Male
;
Mutation
;
Pedigree
9.Analysis of a pedigree affected with congenital hypofibrinogenemia due to heterozygous Ser313Ile mutation of fibrinogen γ chain gene.
Liqing ZHU ; Misheng ZHAO ; Xiaoli CHENG ; Dandan YU ; Xiaolong LI ; Fei XU ; Jinguo WANG ; Mingshan WANG
Chinese Journal of Medical Genetics 2018;35(2):179-183
OBJECTIVETo explore the genetic basis for a Chinese pedigree affected with congenital hypofibrinogenamia.
METHODSPeripheral blood samples were collected from 9 members from the pedigree. Routine coagulation tests including activated partial thromboplastin time (APTT), thrombin time (TT), the prothrombin time (PT) were carried out. The activity of fibrinogen (Fg: C) was measured using Clauss method, and fibrinogen antigen (Fg: Ag) was measured with immunoturbidimetry. All exons and exon-intron boundaries of the fibrinogen Aα, Bβ and γ chain genes were amplified using PCR, which was followed by direct sequencing. Suspected mutation was confirmed by reverse sequencing. The mutant fibrinogen was analyzed with Swiss-PdbViewer.
RESULTSThe proband showed prolonged APTT, PT and TT. Her functional fibrinogen (Fg: C) and antigen fibrinogen (Fg: Ag) levels were reduced to 0.69 g/L and 0.72 g/L, respectively. Her mother and grandmother also had a low levels of fibrinogen, which were 0.99 g/L and 0.83 g/L for Fg: C, 1.02 g/L and 0.87 g/L for Fg: Ag, respectively. The results of other members from the pedigree were all within the normal range. Genetic analysis reveled a heterozygous G>T mutation at nucleotide 7590 in exon 8 of γ gene in the proband, which was predicted to be a novel Ser313Ile mutation. The mutation was also found in her mother and grandmother. Model analysis showed that the Ser313Ile mutation disturbed the hydrogen bonds between Ser313, Asn319 and Asp320. Moreover, the mutation also altered the mutual electrostatic force and affected the folding and instability of the mutant fibrinogen.
CONCLUSIONThe heterozygous Ser313Ile mutation probably underlies the hypofibrinogenemia in this pedigree.
Adult ; Afibrinogenemia ; genetics ; Female ; Fibrinogen ; chemistry ; genetics ; Heterozygote ; Humans ; Male ; Middle Aged ; Mutation ; Pedigree
10.Analysis of a family with congenital dysfibrinogenemia caused by an Arg275His mutation in the gamma chain of fibrinogen.
Jie YAN ; Donghong DENG ; Xuelian DENG ; Meiling LUO ; Peng CHENG ; Lin LIAO ; Faquan LIN
Chinese Journal of Medical Genetics 2016;33(2):160-163
OBJECTIVETo explore the clinical phenotype of a family affected with congenital dysfibrinogenemia and potential mutations underlying the disease.
METHODSCoagulation testing and hepatorenal function testing were conducted on 18 individuals from three generations. Plasma fibrinogen was extracted and analyzed with SDS-PAGE electrophoresis. All of the exons and flanking sequences of fibrinogen FGA, FGB, FGG genes were analyzed by PCR, and the products were subjected to Sanger sequencing.
RESULTSHepatorenal function, prothrombin time and activated partial thromboplastin time of the proband were all normal. However, his thrombin time was significantly prolonged. Fibrinogen activity was decreased, while the concentration of antigen was in the normal range. The results of his mother, brother, and nephew were similar. DNA sequencing has confirmed that the proband, his mother, brother, and nephew have all carried a g.5877G>A mutation in the exon 8 of the FGG gene, which resulted in replacement of arginine (Arg) by histidine (His) at position 275.
CONCLUSIONThe Arg275His mutation of the fibrinogen gamma chain probably underlies the pathogenesis of congenital dysfibrinogenemia in this family.
Adult ; Afibrinogenemia ; genetics ; metabolism ; Asian Continental Ancestry Group ; genetics ; Base Sequence ; China ; Female ; Fibrinogen ; genetics ; metabolism ; Humans ; Male ; Molecular Sequence Data ; Mutation ; Mutation, Missense ; Pedigree ; Point Mutation

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