TY - JOUR
T1 - Genetic analysis of hereditary factor X deficiency in a French patient of Sri Lankan ancestry
T2 - In vitro expression study identified Gly366Ser substitution as the molecular basis of the dysfunctional factor X
AU - Isshiki, Ikuko
AU - Favier, Remi
AU - Moriki, Takanori
AU - Uchida, Toshihiro
AU - Ishihara, Hiroaki
AU - Van Dreden, Patrick
AU - Murata, Mitsuru
AU - Ikeda, Yasuo
PY - 2005/1/1
Y1 - 2005/1/1
N2 - We investigated a new family with cross-reactive material-positive factor X (FX) deficiency. The proband was an 11-year-old French girl from Sri Lanka with a tendency towards severe bleeding. The FX antigen level was 67%, although the activity with extrinsic pathway was 1 U/dl. The complete nucleotide sequences of all exons and exon/ intron junctions of the patient's genomic DNA revealed a homozygous G → A substitution in exon 8, which would result in replacement of Gly366 with Ser. The proband is the first reported case of homozygote for the FX Gly366Ser mutation. Heterozygosity for Gly366Ser substitution was previously reported in a Japanese patient (FX Nagoya 2). We studied the functional consequences by expressing mutant FX Gly366Ser protein in HEK293 cells. FX Gly366Ser was secreted into the culture media at levels similar to wild-type FX; however, mutant FX activities were only 0.04, 1.05, and 0.75% of wild-type FX upon activation by the extrinsic system, the intrinsic system, and Russell's viper venom, respectively. Moreover, the activity of FX Gly366Ser was undetectable when analyzed with chromogenic-activated FX and thrombin generation assays. These data suggest that the Gly366Ser substitution would cause a major defect in function of the FX molecule.
AB - We investigated a new family with cross-reactive material-positive factor X (FX) deficiency. The proband was an 11-year-old French girl from Sri Lanka with a tendency towards severe bleeding. The FX antigen level was 67%, although the activity with extrinsic pathway was 1 U/dl. The complete nucleotide sequences of all exons and exon/ intron junctions of the patient's genomic DNA revealed a homozygous G → A substitution in exon 8, which would result in replacement of Gly366 with Ser. The proband is the first reported case of homozygote for the FX Gly366Ser mutation. Heterozygosity for Gly366Ser substitution was previously reported in a Japanese patient (FX Nagoya 2). We studied the functional consequences by expressing mutant FX Gly366Ser protein in HEK293 cells. FX Gly366Ser was secreted into the culture media at levels similar to wild-type FX; however, mutant FX activities were only 0.04, 1.05, and 0.75% of wild-type FX upon activation by the extrinsic system, the intrinsic system, and Russell's viper venom, respectively. Moreover, the activity of FX Gly366Ser was undetectable when analyzed with chromogenic-activated FX and thrombin generation assays. These data suggest that the Gly366Ser substitution would cause a major defect in function of the FX molecule.
KW - Cross-reactive material-positive factor X deficiency
KW - Factor X Nagoya 2
KW - Gly366Ser factor X mutant
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U2 - 10.1097/00001721-200501000-00002
DO - 10.1097/00001721-200501000-00002
M3 - Article
C2 - 15650540
AN - SCOPUS:12544250870
SN - 0957-5235
VL - 16
SP - 9
EP - 16
JO - Blood Coagulation and Fibrinolysis
JF - Blood Coagulation and Fibrinolysis
IS - 1
ER -