Structural and functional characterization of novel F7 mutations identified in Chinese factor VIIdeficient patients

Author:

Lou Can123ORCID,Jiang Jiali4,Chen Weizhi5,Zhang Zhili5,Xu Guanqun2,Liu Yu2,Dai Jing2,Ding Qiulan2ORCID,Wang Xuefeng2ORCID,Wei Hongying4,Wu Youwei6,Xu Qin5,Wu Wenman127ORCID

Affiliation:

1. Faculty of Laboratory Medicine, Ruijin Hospital Shanghai Jiao Tong University School of Medicine Shanghai China

2. Department of Laboratory Medicine, Ruijin Hospital Shanghai Jiao Tong University School of Medicine Shanghai China

3. Shanghai Center for Clinical Laboratory Shanghai China

4. Department of Pediatric Hematology The First Hospital Affiliated to Guangxi Medical University Nanning China

5. State Key Laboratory of Microbial Metabolism & Joint International Research Laboratory of Metabolic and Developmental Sciences, School of Life Sciences and Biotechnology Shanghai Jiao Tong University Shanghai China

6. Department of Geriatric Gastroenterology and Endocrinology Shaanxi Provincial People's Hospital Xi'an China

7. Collaborative Innovation Center of Hematology Shanghai Jiao Tong University School of Medicine Shanghai China

Abstract

SummaryHereditary factor VII (FVII) deficiency is a rare recessive bleeding disorder with an estimated prevalence of 1/500 000. We had investigated 50 unrelated Chinese patients with FVII deficiency and identified, in total, 25 mutations, including 18 missense mutations and 5 splicing mutations, on the F7 gene. The nucleotide transition c.1224T>G (p.His408Gln) in exon 9 constitutes a hotspot of mutation, with 19 patients harbouring this genetic variance. Few patients were homozygous or compound heterozygous for deleterious mutations, such as non‐sense mutations, large insertion or deletions, indicating that complete deficiency of FVII may not be compatible with life. The eight novel mutations identified in the study, including one small deletion (p.Glu49GlyfsTer101), three type I missense mutations, p.Cys238Phe, p.Gly420Asp, p.Ala252Val and four type II missense mutations, p.Val336Met, p.Ser342Gly, p.Gly432Ser and p.Ile213Asn, were further analysed by in vitro expression and functional studies. The laboratory phenotype and structural analysis confirmed the functional consequence of p.Ile213Asn mutation involving cleavage and activation site. The molecular dynamic simulations and binding energy calculations along with functional probing of p.Gly432Ser mutation revealed the critical role of residue Gly432 in the binding between activated factor VII (factor VIIa) and tissue factor.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Hematology

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