Screening of germline mutations in the CDKN2A and CDKN2B genes in Swedish families with hereditary cutaneous melanoma

被引:135
|
作者
Platz, A
Hansson, J
ManssonBrahme, E
Lagerlof, B
Linder, S
Lundqvist, E
Sevigny, P
Inganas, M
Ringborg, U
机构
[1] KAROLINSKA HOSP,DEPT ONCOL,S-17176 STOCKHOLM,SWEDEN
[2] PHARMACIA BIOTECH,UPPSALA,SWEDEN
[3] KAROLINSKA HOSP,DEPT PATHOL,S-10401 STOCKHOLM,SWEDEN
关键词
D O I
10.1093/jnci/89.10.697
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background: Approximately 10% of human cutaneous melanomas occur in families in which several members are affected, The familial predisposition to this disease is often associated with dysplastic nevus syndrome, a condition in which afflicted family members have multiple dysplastic nevi (atypical moles), The chromosome region 9p21 and markers on chromosomes 1p and 6p have been linked to melanoma susceptibility, The tumor suppressor genes CDKN2A and CDKN2B have been mapped to the 9p21 region, and genetic analyses have revealed the presence of germline CDKN2A alterations in melanoma families, The reported frequencies of such alterations, however, vary among these families, Purpose: The present investigation was carried out to determine the frequencies of CDKN2A and CDKN2B germline gene mutations among members in a population-based cohort of Swedish melanoma families (i.e., melanoma kindreds), Methods: DNA was prepared from blood samples obtained from 181 individuals belonging to 100 melanoma kindreds, The polymerase chain reaction (PCR) technique, followed by single-strand conformation polymorphism (SSCP) and nucleotide sequence analyses, were used to identify the types and frequencies of mutations in exons 1, 1 beta, 2, and 3 of the CDKN2A gene and in exons 1 and 2 of the CDKN2B gene, Results: CDKN2A gene aberrations were independently identified by both SSCP and nucleotide-sequence analyses, Nucleotide-sequence analysis identified a single point mutation leading to a substitution of leucine for proline in codon 48 of exon 1 in a family with a history of melanoma and several other cancers, A second abnormality, leading to an insertion of an extra arginine residue at codon number 113 of exon 2, was seen in four separate families, The CDKN2A exon-3 coding region had the wild-type sequence in all samples, No germline mutations were found in the alternative exon 1 beta of the CDKN2A gene or in exons 1 and 2 of the CDKN2B gene, Conclusions: The present investigation demonstrates that CDKN2A germline gene mutations were observed in 7.8% of the 64 Swedish melanoma kindreds that each included at least two first-degree relatives with melanoma and dysplastic nevus syndrome, No CDKN2A exon 1 beta or CDKN2B mutations were identified, The critical genes responsible for the inheritance of a susceptibility to develop melanoma among family members in this population have yet to be identified.
引用
收藏
页码:697 / 702
页数:6
相关论文
共 50 条
  • [21] CDKN2A mutations in melanoma families from Uruguay
    Borges, A. L.
    Cuellar, F.
    Puig-Butille, J. A.
    Scarone, M.
    Delgado, L.
    Badenas, C.
    Mila, M.
    Malvehy, J.
    Barquet, V.
    Nunez, J.
    Laporte, M.
    Fernandez, G.
    Levrero, P.
    Martinez-Asuaga, M.
    Puig, S.
    BRITISH JOURNAL OF DERMATOLOGY, 2009, 161 (03) : 536 - 541
  • [22] Genetic study of the CDKN2A and CDKN2B genes in renal cell carcinoma patients
    Kiatprungvech, Nattaradee
    Sangkum, Premsant
    Malinee, Rozita
    Sommaluan, Suchada
    Korkiatsakul, Veerawat
    Worawichawong, Suchin
    Rerkamnuaychoke, Budsaba
    Kongruang, Adcharee
    Aeesoa, Suraida
    Lertsithichai, Panuwat
    Kijvikai, Kittinut
    Kongchareonsombat, Wisoot
    Siriboonpiputtana, Teerapong
    PRACTICAL LABORATORY MEDICINE, 2024, 40
  • [23] Methylation patterns of the CDKN2B and CDKN2A genes in an indigenous population exposed to pesticides
    Paredes-Cespedes, Diana M.
    Bernal-Hernandez, Yael Yvette
    Herrera-Moreno, Jose Francisco
    Rojas-Garcia, Aurora Elizabeth
    Medina-Diaz, Irma Martha
    Gonzalez-Arias, Cyndia A.
    Barron-Vivanco, Briscia Socorro
    HUMAN & EXPERIMENTAL TOXICOLOGY, 2022, 41
  • [24] Methylation patterns of the CDKN2B and CDKN2A genes in an indigenous population exposed to pesticides
    Paredes-Cespedes, Diana M.
    Bernal-Hernandez, Yael Yvette
    Herrera-Moreno, Jose Francisco
    Rojas-Garcia, Aurora Elizabeth
    Medina-Diaz, Irma Martha
    Gonzalez-Arias, Cyndia A.
    Barron-Vivanco, Briscia Socorro
    HUMAN & EXPERIMENTAL TOXICOLOGY, 2022, 41
  • [25] Identification of modifier genes for cutaneous malignant melanoma in melanoma-prone families with and without CDKN2A mutations
    Yang, Xiaohong Rose
    Pfeiffer, Ruth M.
    Wheeler, William
    Yeager, Meredith
    Chanock, Stephen
    Tucker, Margaret A.
    Goldstein, Alisa M.
    INTERNATIONAL JOURNAL OF CANCER, 2009, 125 (12) : 2912 - 2917
  • [26] Familial Melanoma, Pancreatic Cancer and Germline CDKN2A Mutations
    Goldstein, Alisa M.
    HUMAN MUTATION, 2004, 23 (06) : 630 - +
  • [27] Mutation screening of the CDKN2A promoter in melanoma families
    Harland, M
    Holland, EA
    Ghiorzo, P
    Mantelli, M
    Bianchi-Scarrà, G
    Goldstein, AM
    Tucker, MA
    Ponder, BAJ
    Mann, GJ
    Bishop, DT
    Bishop, JN
    GENES CHROMOSOMES & CANCER, 2000, 28 (01): : 45 - 57
  • [28] Noncoding germline mutations in p16/CDKN2A in melanoma prone families
    Andrew, S
    CLINICAL GENETICS, 1999, 56 (03) : 188 - 190
  • [29] Germline hemizygous deletion of CDKN2A–CDKN2B locus in a patient presenting with Li–Fraumeni syndrome
    Sock Hoai Chan
    Weng Khong Lim
    Scott T Michalski
    Jing Quan Lim
    Nur Diana Binte Ishak
    Marie Met-Domestici
    Cedric Ng Chuan Young
    Karen Vikstrom
    Edward D Esplin
    Jennifer Fulbright
    Mei Kim Ang
    Joseph Wee
    Kesavan Sittampalam
    Mohamad Farid
    Stephen E Lincoln
    Koji Itahana
    Syafiq Abdullah
    Bin Tean Teh
    Joanne Ngeow
    npj Genomic Medicine, 1
  • [30] CDKN2A mutations in Canadian malignant melanoma families.
    Summers, AM
    Hogg, D
    Shennan, M
    Lassam, N
    AMERICAN JOURNAL OF HUMAN GENETICS, 1999, 65 (04) : A324 - A324