4.7 Article

Protein residue network analysis reveals fundamental properties of the human coagulation factor VIII

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-92201-3

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资金

  1. National Institute of Biomedical Innovation, Health and Nutrition (NIBIOHN) [SIPAIH20D01]
  2. CAPES (Coordination for the Improvement of Higher Education Personnel-Brazilian Federal Government Agency) [88887.463387/2019-00]
  3. CNPq (Brazilian National Council for Scientific and Technological Development) [302077/2017-0]
  4. FAPESP (Sao Paulo Research Foundation) [2013/07375-0]
  5. Council for Science, Technology and Innovation (CSTI), Cross-ministerial Strategic Innovation Promotion Program (SIP), Innovative AI Hospital System

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This study investigated the pathogenesis of hemophilia A by creating a residue interaction network, revealing important properties related to disease severity. The properties derived from the network were found to be in close agreement with in vitro and clinical reports, indicating that the detailed map of the FVIII protein accurately captures its biological properties.
Hemophilia A is an X-linked inherited blood coagulation disorder caused by the production and circulation of defective coagulation factor VIII protein. People living with this condition receive either prophylaxis or on-demand treatment, and approximately 30% of patients develop inhibitor antibodies, a serious complication that limits treatment options. Although previous studies performed targeted mutations to identify important residues of FVIII, a detailed understanding of the role of each amino acid and their neighboring residues is still lacking. Here, we addressed this issue by creating a residue interaction network (RIN) where the nodes are the FVIII residues, and two nodes are connected if their corresponding residues are in close proximity in the FVIII protein structure. We studied the characteristics of all residues in this network and found important properties related to disease severity, interaction to other proteins and structural stability. Importantly, we found that the RIN-derived properties were in close agreement with in vitro and clinical reports, corroborating the observation that the patterns derived from this detailed map of the FVIII protein architecture accurately capture the biological properties of FVIII.

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