FHLdb: A Comprehensive Database on the Molecular Basis of Familial Hemophagocytic Lymphohistiocytosis

被引:6
作者
Vinas-Gimenez, Laura [1 ,2 ]
Padilla, Natalia [3 ]
Batlle-Maso, Laura [4 ,5 ]
Casals, Ferran [4 ]
Riviere, Jacques G. [2 ,6 ]
Martinez-Gallo, Monica [1 ,2 ]
de la Cruz, Xavier [3 ,7 ]
Colobran, Roger [1 ,2 ,8 ]
机构
[1] Autonomous Univ Barcelona UAB, Hosp Univ Vall dHebron HUVH, Vall dHebron Res Inst VHIR, Immunol Div,Dept Cell Biol Physiol & Immunol, Barcelona, Spain
[2] Jeffrey Model Fdn Excellence Ctr, Barcelona, Spain
[3] Vall dHebron Res Inst VHIR, Res Unit Clin & Translat Bioinformat, Barcelona, Spain
[4] Univ Pompeu Fabra, Serv Genom, Dept Ciencies Expt & Salut, Parc Recerca Biomed Barcelona, Barcelona, Spain
[5] UPF, CSIC, Dept Ciencies Expt & Salut, Inst Evolutionary Biol, Parc Recerca Biomed Barcelona, Barcelona, Spain
[6] UAB, Vall dHebron Res Inst VHIR, Hosp Univ Vall dHebron HUVH, Pediat Infect Dis & Immunodeficiencies Unit UPIIP, Barcelona, Spain
[7] ICREA, Barcelona, Spain
[8] Hosp Univ Vall dHebron HUVH, Genet Dept, Barcelona, Spain
关键词
primary immunodeficiency; hemophagocytic lymphohistiocytosis; database; genetics; mutation; genetic variant; SYNERGISTIC DEFECTS; GENE; MUTATIONS; GUIDELINES; DIAGNOSIS;
D O I
10.3389/fimmu.2020.00107
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Background: Primary immunodeficiencies (PIDs) are a heterogeneous group of disorders. The lack of comprehensive disease-specific mutation databases may hinder or delay classification of the genetic variants found in samples from these patients. This is especially true for familial hemophagocytic lymphohistiocytosis (FHL), a life-threatening PID classically considered an autosomal recessive condition, but with increasingly demonstrated genetic heterogeneity. Objective: The aim of this study was to build an open-access repository to collect detailed information on the known genetic variants reported in FHL. Methods: We manually reviewed more than 120 articles to identify all reported variants related to FHL. We retrieved relevant information about the allelic status, the number of patients with the same variant, and whether functional assays were done. We stored all the data retrieved in a PostgreSQL database and then built a website on top of it, using the Django framework. Results: The database designed (FHLdb) (https://www.biotoclin.org/FHLdb) contains comprehensive information on reported variants in the 4 genes related to FHL (PRF1, UNC13D, STXBP2, STX11). It comprises 240 missense, 69 frameshift, 51 nonsense, 51 splicing, 10 in-frame indel, 7 deep intronic, and 5 large rearrangement variants together with their allelic status, carrier(s) information, and functional evidence. All genetic variants have been classified as pathogenic, likely pathogenic, uncertain significance, likely benign or benign, according to the American College of Medical Genetics guidelines. Additionally, it integrates information from other relevant databases: clinical evidence from ClinVar and UniProt, population allele frequency from ExAC and gnomAD, and pathogenicity predictions from well-recognized tools (e.g., PolyPhen-2, SIFT). Finally, a diagram depicts the location of the variant relative to the gene exon and protein domain structures. Conclusion: FHLdb includes a broad range of data on the reported genetic variants in familial HLH genes. It is a free-access and easy-to-use resource that will facilitate the interpretation of molecular results of FHL patients, and it illustrates the potential value of disease-specific databases for other PIDs.
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页数:8
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