Research Article

Diagnosis of Fanconi Anemia: Mutation Analysis by Multiplex Ligation-Dependent Probe Amplification and PCR-Based Sanger Sequencing

Table 3

Mutations detected in a cohort of 54 patients by screening FANCA, FANCC, FANCE, FANCF and FANCG.

Allele 1Allele 2
Country of origin1GeneDNA changeEffectNumber of database entriesDNA changeEffectNumber of database entries

1ESFANCAex16_17deldel12xc.1115_1118delp.Val372fs62x
2PTFANCAc.718C>Tp.Gln240X2xc.2870G>AW957X1x
3NLFANCAex15deldel3xex15deldel3x
4NLFANCAc.3788_3790delp.Phe1263del215xc.3788_3790delp.Phe1263del215x
5CAFANCAc.718C>TpGlnx240X2xc.1085T>Cp.Leu362Pronovel
6PTFANCAc.3788_3790delp.Phe1263del215xc.4130C>Gp.Ser1377X1x
7IEFANCAc.2812_2830dupp.Asp944fs3xc.2812_2830dupp.Asp944fs3x
8AUFANCAc.2303T>Cp.Leu768Pro5xc.2303T>Cp.Leu768Pro5x
9NLFANCAc.862G>Tp.Glu288X1xc.862G>Tp.Glu288X1x
10NLFANCAex11_33deldel1xc.2121delCp.Asn707fsnovel
11DKFANCAex1_8deldel1xc.3788_3790delp.Phe1263del215x
12UKFANCAc.337_338delp.Ala114fs1xc.3349A>Gp.Arg1117Gly2x
13UKFANCAc.3568C>Tp.Gln1190Xnovelc.3568C>Tp.Gln1190Xnovel
14NLFANCAc.487delCp.Arg163fs1xc.2851C>Tp.Arg951Trp11x
15SEFANCAc.88delGp.Val30fsnovelc.100A>Tp.Lys34X2x
16NLFANCAc.862G>Tp.Glu288X9xc.1771C>Tp.Arg591X9x
17PTFANCAc.1709_1715+4delp.Glu570fsnovelc.3430C>Tp.Arg1144Trpnovel
18NOFANCAc.100A>Tp.Lys34X2xc.1378C>Tp.Arg460Xnovel
19PTFANCAex15_17deldel2xex15_17deldel2x
20NLFANCAc.2982-192A>Gsplice2novelex7_31deldel
21AUFANCAc.427-8_427-5delsplicenovelc.1771C>Tp.Arg591X9x
22AUFANCAc.3491C>Tp.Pro1164Leunovelc.3491C>Tp.Pro1164Leunovel
23CAFANCAex4_29deldelnovelex31deldel6x
24NLFANCAc.3391A>Gp.Thr1131Ala15xc.3391A>Gp.Thr1131Ala15x
25GRFANCAc.2T>Cp.Met1?1xc.3788_3790delp.Phe1263del215x
26IEFANCAc.851dupp.Val285fsnovelc.2534T>Cp.Leu845Pro4x
27NLFANCAc.2852G>Ap.Arg951Gln6xc.3624C>Tp.= (splice)2x
28AUFANCAc.331_334dupp.Leu112fsnovelex22_29deldelnovel
29NLFANCAc.862G>Tp.Glu288X9xc.3920delAp.Gln1307fs2x
30IRFANCAex21deldelnovelex21deldelnovel
31SEFANCAex1_12deldelnovelex22_29deldelnovel
32NLFANCBc.755_767delp.Leu252fsnovel
33NLFANCCc.67delGp.Asp23fs50xc.553C>Tp.Arg185X14x
34NLFANCCc.67delGp.Asp23fs50xc.67delGp.Asp23fs50x
35CAFANCCc.67delGp.Asp23fs50xc.553C>Tp.Arg185X14x
36NLFANCCc.67delGp.Asp23fs50xc.1155-1G>Csplicenovel
37NLFANCCc.67delGp.Asp23fs50xc.67delGp.Asp23fs50x
38NLFANCCc.67delGp.Asp23fs50xc.467delCp.Ser156fsnovel
39PTFANCEc.1111C>Tp.Arg371Trp6xc.1111C>Tp.Arg371Trp6x
40UKFANCFc.496C>Tp.Gln166X4xc.496C>Tp.Gln166X4x
41UKFANCGc.307+2delTsplicenovelc.307+2delTsplicenovel
42UKFANCGc.1471_1473delinsGp.Lys491fsnovelc.1471_1473delinsGp.Lys491fsnovel
43NLFANCGc.65G>Cp.Arg22Pro6xc.65G>C;p.Arg22Pro6x
44IRFANCGc.307+1G>Csplice21xc.307+1G>Csplice21x
45NLFANCGc.85-1G>Asplicenovelc.85-1G>Asplicenovel

1Country of origins: AU: Australia; CA: Canada; DK: Denmark; ES: Spain; GR: Greece; IE: Ireland; IR: Iran; NL: Netherlands; PT: Portugal; SE: Sweden; UK: United Kingdom
Number of database entries refers to the FA database at: http://www.rockefeller.edu/fanconi/.
The pathogenic state of novel missense mutations is based upon in silico prediction algorithms (SIFT, POLYPHEN2, Align GVGD), the presence of a second clearly pathogenic mutation in the same gene and segregation in the family.
2Effect c.2982-192A>G: by studying cDNA it was shown that the mutation created a new splice donor site resulting in an aberrant mRNA.