Molecular Genetic Analysis of the PLP1 Gene in 38 Families with PLP1-related disorders: Identification and Functional Characterization of 11 Novel PLP1 Mutations

被引:37
作者
Grossi, Serena [1 ]
Regis, Stefano [1 ]
Biancheri, Roberta [2 ]
Mort, Matthew [3 ]
Lualdi, Susanna [1 ]
Bertini, Enrico [4 ]
Uziel, Graziella [5 ]
Boespflug-Tanguy, Odile [6 ,7 ]
Simonati, Alessandro [8 ]
Corsolini, Fabio [1 ]
Demir, Ercan [9 ]
Marchiani, Valentina [10 ]
Percesepe, Antonio [11 ]
Stanzial, Franco [12 ]
Rossi, Andrea [13 ]
Vaurs-Barriere, Catherine [6 ]
Cooper, David N. [3 ]
Filocamo, Mirella [1 ]
机构
[1] IRCCS G Gaslini, SSD Lab Diag Prepostnatale Malattie Metab, Genoa, Italy
[2] IRCCS G Gaslini, UO Neuropsichiatria Infantile, Genoa, Italy
[3] Cardiff Univ, Sch Med, Inst Med Genet, Cardiff CF14 4XN, S Glam, Wales
[4] Bambino Gesu Pediat Hosp, Unit Neuromuscular Disorders, Mol Med Lab, Rome, Italy
[5] Fdn IRCCS Ist Neurol, Child Neurol Dept, C Besta Milano, Italy
[6] Clermont Univ, GReD, Fac Med, INSERM,UMR 931,CNRS 6247, Clermont Ferrand, France
[7] Hop Robert Debre, APHP, Reference Ctr Rare Dis Leukodystrophies, Serv Neurol Pediat & Malad Metab, F-75019 Paris, France
[8] Child Neurol & Psychiat Unit, Neurol Sect, Dept Neurol Neuropsychol Morphol & Motor Sci, Verona, Italy
[9] Gazi Univ, Sch Med, Dept Child Neurol, Ankara, Turkey
[10] Osped S Orsola Malpighi, UO Neuropsichiatria Infantile Azienda, Bologna, Italy
[11] Univ Modena, Dept Mother & Child, Unit Med Genet, I-41100 Modena, Italy
[12] Ctr Prov Coordinamento Rete Malattie Rare, Serv Consulenza Genet, Bolzano, Italy
[13] IRCCS G Gaslini, Serv Neuroradiol Pediat, Genoa, Italy
关键词
PELIZAEUS-MERZBACHER-DISEASE; PROTEOLIPID PROTEIN GENE; GENOTYPE-PHENOTYPE CORRELATION; AMINO-ACID SUBSTITUTIONS; CNS MYELIN; GENOMIC REARRANGEMENTS; INHERITED DISEASE; POINT MUTATIONS; X-INACTIVATION; COPY NUMBER;
D O I
10.1186/1750-1172-6-40
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: The breadth of the clinical spectrum underlying Pelizaeus-Merzbacher disease and spastic paraplegia type 2 is due to the extensive allelic heterogeneity in the X-linked PLP1 gene encoding myelin proteolipid protein (PLP). PLP1 mutations range from gene duplications of variable size found in 60-70% of patients to intragenic lesions present in 15-20% of patients. Methods: Forty-eight male patients from 38 unrelated families with a PLP1-related disorder were studied. All DNA samples were screened for PLP1 gene duplications using real-time PCR. PLP1 gene sequencing analysis was performed on patients negative for the duplication. The mutational status of all 14 potential carrier mothers of the familial PLP1 gene mutation was determined as well as 15/24 potential carrier mothers of the PLP1 duplication. Results and Conclusions: PLP1 gene duplications were identified in 24 of the unrelated patients whereas a variety of intragenic PLP1 mutations were found in the remaining 14 patients. Of the 14 different intragenic lesions, 11 were novel; these included one nonsense and 7 missense mutations, a 657-bp deletion, a microdeletion and a microduplication. The functional significance of the novel PLP1 missense mutations, all occurring at evolutionarily conserved residues, was analysed by the MutPred tool whereas their potential effect on splicing was ascertained using the Skippy algorithm and a neural network. Although MutPred predicted that all 7 novel missense mutations would be likely to be deleterious, in silico analysis indicated that four of them (p. Leu146Val, p.Leu159Pro, p.Thr230Ile, p.Ala247Asp) might cause exon skipping by altering exonic splicing elements. These predictions were then investigated in vitro for both p.Leu146Val and p.Thr230Ile by means of RNA or minigene studies and were subsequently confirmed in the case of p.Leu146Val. Peripheral neuropathy was noted in four patients harbouring intragenic mutations that altered RNA processing, but was absent from all PLP1-duplication patients. Unprecedentedly, family studies revealed the de novo occurrence of the PLP1 duplication at a frequency of 20%.
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