Identification of 58 novel mutations in Niemann-Pick disease Type C:: Correlation with biochemical phenotype and importance of PTC1-like domains in NPC1

被引:151
|
作者
Park, WD
O'Brien, JF
Lundquist, PA
Kraft, DL
Vockley, CW
Karnes, PS
Patterson, MC
Snow, K
机构
[1] Mayo Clin & Mayo Fdn, Dept Lab Med & Pathol, Div Lab Genet, Rochester, MN 55905 USA
[2] Mayo Clin & Mayo Fdn, Dept Med Genet, Rochester, MN 55905 USA
[3] Columbia Univ, Div Pediat Neurol, New York, NY USA
关键词
Niemann-Pick Type C; mutation analysis; CSGE; NPC1 detection algorithm; NPC1; NPC2; HE1;
D O I
10.1002/humu.10255
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The two known complementation groups of Niemann-Pick Type C disease, NPC1 and NPC2, result from nonallelic protein defects. Both the NPC1 and NPC2 (HE 1) gene products are intimately involved in cholesterol and glycolipid trafficking and/or transport. We describe mutation analysis on samples from 143 unrelated affected NPC patients using conformation sensitive gel electrophoresis and DNA sequencing as the primary mutation screening methods for NPC1 and NPC2, respectively. These methods are robust, sensitive, and do not require any specialized laboratory equipment. Analyses identified two NPC1 mutations for 115 (80.4%) patients, one NPC1 mutation for 10 (7.0%) patients, two NPC2 mutations for five (3.5%) patients, one NPC2 mutation for one (0.7%) patient, and no mutations for 12 (8.4%) patients. Thus, mutations were identified on 251 of 286 (88%) disease alleles, including 121 different mutations (114 in NPC1 and seven in NPC2), 58 of which are previously unreported. The most common NPC1 mutation, I1061T, was detected on 18% of NPC alleles. Other NPC1 mutations were mostly private, missense mutations located throughout the gene with clustering in the cysteine-rich luminal domain. Correlation with biochemical data suggests classification of several mutations as severe and others as moderate or variable. The region between amino acids 1038 and 1253, which shares 35% identity with Patched 1, appears to be a hot spot for mutations. Additionally, a high percentage of mutations were located at amino acids identical to the NPC1 homolog, NPC1L1 Biochemical complementation analysis of cases negative for mutations revealed a high percentage of equivocal results where the complementation group appeared to be non-NPC1 and non-NPC2. This raises the possibilities of an additional NPC complementation group (s) or non-specificity of the biochemical testing for NPC. These caveats must be considered when offering mutation testing as a clinical service. (C) 2003 Wiley-Liss, Inc.
引用
收藏
页码:313 / 325
页数:13
相关论文
共 50 条
  • [31] Novel compound heterozygous mutation in NPC1 gene cause Niemann-Pick disease type C with juvenile onset
    Costanzo, Maria Cristina
    Nicotera, Antonio Gennaro
    Vinci, Mirella
    Vitello, Aurelio
    Fiumara, Agata
    Cali, Francesco
    Musumeci, Sebastiano Antonino
    JOURNAL OF GENETICS, 2020, 99 (01)
  • [32] Rescue of NPC1 protein and effect on biomarkers by arimoclomol treatment in Niemann-Pick disease type C
    Ingemann, Linda
    Petersen, Nikolaj Havnsoe Torp
    Koustrup, Anja
    Fog, Catherine Kolster
    Mehmedbasic, Arnela
    Dali, Christine I.
    MOLECULAR GENETICS AND METABOLISM, 2020, 129 (02) : S78 - S78
  • [33] Increased NPC1 mRNA in skin fibroblasts from Niemann-Pick disease type C patients
    Yamamoto, T
    Feng, JH
    Higaki, K
    Taniguchi, M
    Nanba, E
    Ninomiya, H
    Ohno, K
    BRAIN & DEVELOPMENT, 2004, 26 (04): : 245 - 250
  • [34] Niemann-Pick type C disease: mutations of NPC1 gene and evidence of abnormal expression of some mutant alleles in fibroblasts
    Tarugi, P
    Ballarini, G
    Bembi, B
    Battisti, C
    Palmeri, S
    Panzani, F
    Di Leo, E
    Martini, C
    Federico, A
    Calandra, S
    JOURNAL OF LIPID RESEARCH, 2002, 43 (11) : 1908 - 1919
  • [35] Defective endocytic trafficking of NPC1 and NPC2 underlying infantile Niemann-Pick type C disease
    Blom, TS
    Linder, MD
    Snow, K
    Pihko, H
    Hess, MW
    Jokitalo, E
    Veckman, V
    Syvänen, AC
    Ikonen, E
    HUMAN MOLECULAR GENETICS, 2003, 12 (03) : 257 - 272
  • [36] Molecular analysis of NPC1 and NPC2 gene in 34 Niemann-Pick C Italian Patients: identification and structural modeling of novel mutations
    Fancello, Tatiana
    Dardis, Andrea
    Rosano, Camillo
    Tarugi, Patrizia
    Tappino, Barbara
    Zampieri, Stefania
    Pinotti, Elisa
    Corsolini, Fabio
    Fecarotta, Simona
    D'Amico, Adele
    Di Rocco, Maja
    Uziel, Graziella
    Calandra, Sebastiano
    Bembi, Bruno
    Filocamo, Mirella
    NEUROGENETICS, 2009, 10 (03) : 229 - 239
  • [37] Niemann-Pick C variant detection by altered sphingolipid trafficking and correlation with mutations within a specific domain of NPC1
    Sun, XF
    Marks, DL
    Park, WD
    Wheatley, CL
    Puri, V
    O'Brien, JF
    Kraft, DL
    Lundquist, PA
    Patterson, MC
    Pagano, RE
    Snow, K
    AMERICAN JOURNAL OF HUMAN GENETICS, 2001, 68 (06) : 1361 - 1372
  • [38] Immunoisolation and characterization of Niemann-Pick type C1 (NPC1)-containing late endosomes
    Millard, EE
    Schaffer, JE
    Ory, DS
    MOLECULAR BIOLOGY OF THE CELL, 2001, 12 : 250A - 250A
  • [39] Niemann-Pick type C1 (NPC1) overexpression alters cellular cholesterol homeostasis
    Millard, EE
    Srivastava, K
    Traub, LM
    Schaffer, JE
    Ory, DS
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (49) : 38445 - 38451
  • [40] Misexpression of the Niemann-Pick disease type C1 (NPC1)-like protein in Arabidopsis causes sphingolipid accumulation and reproductive defects
    Maximilian J. Feldman
    Brenton C. Poirier
    B. Markus Lange
    Planta, 2015, 242 : 921 - 933