| Literature DB >> 34425818 |
Latifa Chkioua1, Yessine Amri2, Sahli Chaima2, Ferdawes Fenni3, Hela Boudabous4, Hadhami Ben Turkia4, Taieb Messaoud2, Neji Tebib4, Sandrine Laradi5.
Abstract
BACKGROUND: Fucosidosis is an autosomal recessive lysosomal storage disease caused by defective alpha-L-fucosidase (FUCA1) activity, leading to the accumulation of fucose-containing glycolipids and glycoproteins in various tissues. Clinical features include angiokeratoma, progressive psychomotor retardation, neurologic signs, coarse facial features, and dysostosis multiplex.Entities:
Keywords: Alpha-L-fucosidase (FUCA1); Angiokeratoma; Bioinformatics tool; Fucosidosis; Mutations
Mesh:
Substances:
Year: 2021 PMID: 34425818 PMCID: PMC8383439 DOI: 10.1186/s12920-021-01061-3
Source DB: PubMed Journal: BMC Med Genomics ISSN: 1755-8794 Impact factor: 3.063
Fig. 1Pedigrees of the three investigated fucosidosis Tunisian families (A–C). Squares and circles indicate male and female members, respectively. The arrow denotes affected individuals. Double lines indicate consanguineous matings. The asterisk indicates family members with clinical history fucosidosis
Family history and description of the three fucosidosis patients
| Features | Patient P1 | Patient P2 | Patient P3 |
|---|---|---|---|
| Consanguinity of parents/degree | First degree | Second degree | Second degree |
| Age of diagnosis (Yr/Mo) | 18 Mos | 12 Mo | 24 Mo |
| Age of onset (Yr/Mo) | 9 Mo | 8 Mo | 18 Mo |
| Age of death | 10 Yr | 6 Yr | 6 Yr |
| Sex | Male | Female | Male |
| FUCA1 assay (nmol/mg prot) | 0.00 | 0.00 | 2.00 |
| 18.4 (2.3–41.9) in control subject | |||
| Elements excreted in the urine | Fuc(α1-6)GlcNAcβ4-Asn++++; Fucosylated oligosaccharides++++ | ||
| Neurological deterioration | ++++ | ++ | + |
| Mental retardation | +++ | +++ | +++ |
| Growth retardation | − 6SD | − 4SD | − 4SD |
| Macroglossia | ++ | ++ | + |
| Spasticity | +++ | +++ | ++ |
| Axial hypotonia | +++ | +++ | ++ |
| Visceromegaly | Hepatomegaly | – | – |
| Recurrent respiratory infections | +++ | +++ | ++ |
| Skin abnormalities | – | Angiokeratoma | Angiokeratoma |
| Type of fucosidosis | Type I | Type I | Type II |
| FUCA1 mutations identified | p.K57Sfs*75/p.K57Sfs*75a | p.F77Sfs*55/p.F77Sfs*55a | p.Gly332Glu /C.662+5g>ca |
| Polymorphisms/sequence variants of the FUCA1 gene | p.P213P;(c.639A>T)a+/+ | p.Y216F;(c.647A>T)+/+ | rs1215568236+/−, p.P10R+/−, rs370615681+/+, rs1329117558+/−, rs965877153T+/, rs1344267327+/+ |
| IVS3-25T>A; (c.647A>T)a+/+ | p.L194Na+/+ | ||
| IVS2-110inst;(c.524 -110inst)a+/+ | p.P10R +/− | ||
| IVS2+38c>g; (c.509+38 c>g)a+/+ | IVS 3–29 a>c;(c.647–29 a>c)a+/+ | ||
| rs180788085 +/−, rs907245739+/+, rs1329117558+/+ | IVS2-78 del t;(c.647-78delt)a+/+ | ||
| p.L172L+/+ | |||
| rs1329117558 +/−, rs370615681 +/− | |||
Yr, Year; Mo, Month; +/+, homozygous state; +/−, heterozygous state
aNovel sequence variants
Fig. 2Position of the FUCA1 mutations identified in this study: p.K57Sfs*75, p.F77Sfs*55, p.G332E, and c.662+5g>c
Predicted effects of the FUCA1 variants
| Variants | Exon/Intron | Prediction | ||
|---|---|---|---|---|
| Deletions | ||||
| c.170delT; p.K57Sfs*75a | Ex 1 | Frameshift | ||
| c.230delT; p.F77Sfs*55a | Ex 1 | |||
| Missense variants | PolyPhen | PMut | SIFT | |
| c.-13G>Aa | 5’UTR | |||
| c.-25 T>Aa | 5’UTR | |||
| rs2070956; c.29C>G; p.P10R | Ex 1 | 0.272 | 0.04 (98%°) Neutral | 0.17 |
| IVS1+39C>Ta | Int 1 | |||
| rs129756703 | Int 1 | |||
| p.L172L; c.516C>Ta | Ex 2 | |||
| p.L194Na; | Ex 3 | 0.43 (85%), Neutral | ||
| p.P213P; c.639A>Ta | Ex 3 | |||
| p.Y216F; c.647A>Ta | Ex 3 | 0.022 | 0.08 | |
| IVS3+5G>Ca; C.662+5g>c | Int 3 | |||
| IVS3-25T>Aa | Int 3 | |||
| rs180788085C>T | Int 4 | |||
| rs907245739 | Int 4 | |||
| Rs1177361428; p.G332E; c.994G>Aa | Ex 6 | 0.977 | 0.82 (90%), Disease | 0.00 |
| Rs1329117558C>T | Int 8 | |||
| Rs965877153T>C | ||||
| Rs1344267327 | ||||
| g.2806G>Aa | 5′UTR |
UTR untranslatedregion, Ex exon, Int Intron
aNovel
Fig. 3Crystallographic structure analysis of the Human Tissue alpha-l-fucosidase. A Structural overlay of the homology model of the Human Tissue alpha-l-fucosidase (green ribbon) with that of the T. maritima bacterium (red ribbon—PDB ID; 2zwy). The secondary structure elements carrying the catalytic residues and bound ligands are indicated in blue and pink for Human and T. maritima alpha-l-fucosidase, respectively. B, C The reported mutation Gly332Glu is located in the loop (colored in green) connecting the seventh strand (colored in pink) with the eleventh helix (colored in red). Gly332 forms one hydrogen bond (shown as green dotted line) with Val 329 (B), whereas (C) the mutant residue Glu332 is predicted to create a novel hydrogen bond and a steric clash (shown as red dotted line) with the Asp54 residue. The images were prepared using Swiss-PdbViewer 4.1.0 and POV-Ray 3.6 software. D The previously reported variants of Human Tissue alpha-l-fucosidase are indicated by dotted arrows. The nonsense, missense, and frameshift mutations are colored in red, blue, and pink, respectively. The catalytic domain is shown in green ribbon, whereas the C-terminal domain is indicated in black. The 3D structure is oriented to best display all previously described mutations