Xiaoyu Zhang, Shuwen Wang, Shaoqiu Leng, Qi Feng, Yanqi Zhang, Shuqian Xu, Lei Zhang, Xinsheng Zhang, Yunhai Fang, Jun Peng, Zi Sheng
Journal: Journal of clinical laboratory analysis 2022;35(9):e23905
PMID: 34342048
INTRODUCTION
Hereditary human coagulation factor VII (FVII) deficiency is an inherited autosomal recessive hemorrhagic disease involving mutations in the F7 gene. The sites and types of F7 mutations may influence the coagulation activities of plasma FVII (FVII: C) and severity of hemorrhage symptoms. However, the specific mutations that impact FVII activity are not completely known.
METHODS
We tested the coagulation functions and plasma activities of FVII in seven patients recruited from six families with hereditary FVII deficiency and sequenced the F7 gene of the patients and their families. Then, we analyzed the genetic information from the six families and predicted the structures of the mutated proteins.
RESULTS
In this study, we detected 11 F7 mutations, including four novel mutations, in which the mutations p.Phe84Ser and p.Gly156Cys encoded the Gla and EGF domains of FVII, respectively, while the mutation p.Ser339Leu encoded the recognition site of the enzymatic protein and maintained the conformation of the catalytic domain structure. Meanwhile, the mutation in the 5' untranslated region (UTR) was closely associated with the mRNA regulatory sequence.
CONCLUSION
We have identified novel genetic mutations and performed pedigree analysis that shed light on the pathogenesis of hereditary human coagulation FVII deficiency and may contribute to the development of treatments for this disease.
© 2021 The Authors. Journal of Clinical Laboratory Analysis published by Wiley Periodicals LLC.
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