Literature DB >> 8652807

Inactivation of multiple tumor-suppressor genes involved in negative regulation of the cell cycle, MTS1/p16INK4A/CDKN2, MTS2/p15INK4B, p53, and Rb genes in primary lymphoid malignancies.

A Hangaishi1, S Ogawa, N Imamura, S Miyawaki, Y Miura, N Uike, C Shimazaki, N Emi, K Takeyama, S Hirosawa, N Kamada, Y Kobayashi, Y Takemoto, T Kitani, K Toyama, S Ohtake, Y Yazaki, R Ueda, H Hirai.   

Abstract

It is now evident that the cell cycle machinery has a variety of elements negatively regulating cell cycle progression. However, among these negative regulators in cell cycle control, only 4 have been shown to be consistently involved in the development of human cancers as tumor suppressors: Rb (Retinoblastoma susceptibility protein), p53, and two recently identified cyclin-dependent kinase inhibitors, p16INK4A/MTS1 and p15INK4B/MTS2. Because there are functional interrelations among these negative regulators in the cell cycle machinery, it is particularly interesting to investigate the multiplicity of inactivations of these tumor suppressors in human cancers, including leukemias/lymphomas. To address this point, we examined inactivations of these four genes in primary lymphoid malignancies by Southern blot and polymerase chain reaction-single-strand conformation polymorphism analyses. We also analyzed Rb protein expression by Western blot analysis. The p16INK4A and p15INK4B genes were homozygously deleted in 45 and 42 of 230 lymphoid tumor specimens, respectively. Inactivations of the Rb and p53 genes were 27 of 91 and 9 of 173 specimens, respectively. Forty-one (45.1%) of 91 samples examined for inactivations of all four tumor suppressors had one or more abnormalities of these four tumor-suppressor genes, indicating that dysregulation of cell cycle control is important for tumor development. Statistical analysis of interrelations among impairments of these four genes indicated that inactivations of the individual tumor-suppressor genes might occur almost independently. In some patients, disruptions of multiple tumor-suppressor genes occurred; 4 cases with p16INK4A, p15INK4B, and Rb inactivations; 2 cases with p16INK4A, p15INK4B, and p53 inactivations; and 1 case with Rb and p53 inactivations. It is suggested that disruptions of multiple tumor suppressors in a tumor cell confer an additional growth advantage on the tumor.

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Year:  1996        PMID: 8652807

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  17 in total

Review 1.  Burkitt's lymphoma: new insights into molecular pathogenesis.

Authors:  C Bellan; S Lazzi; G De Falco; A Nyongo; A Giordano; L Leoncini
Journal:  J Clin Pathol       Date:  2003-03       Impact factor: 3.411

2.  Genetic alterations of the retinoblastoma-related gene RB2/p130 identify different pathogenetic mechanisms in and among Burkitt's lymphoma subtypes.

Authors:  C Cinti; L Leoncini; A Nyongo; F Ferrari; S Lazzi; C Bellan; R Vatti; A Zamparelli; G Cevenini; G M Tosi; P P Claudio; N M Maraldi; P Tosi; A Giordano
Journal:  Am J Pathol       Date:  2000-03       Impact factor: 4.307

3.  INK4a/ARF locus alterations in human non-Hodgkin's lymphomas mainly occur in tumors with wild-type p53 gene.

Authors:  M Pinyol; L Hernández; A Martínez; F Cobo; S Hernández; S Beà; A López-Guillermo; I Nayach; A Palacín; A Nadal; P L Fernández; E Montserrat; A Cardesa; E Campo
Journal:  Am J Pathol       Date:  2000-06       Impact factor: 4.307

4.  Enhancement of infectivity and persistence in vivo by HBZ, a natural antisense coded protein of HTLV-1.

Authors:  Joshua Arnold; Brenda Yamamoto; Min Li; Andrew J Phipps; Ihab Younis; Michael D Lairmore; Patrick L Green
Journal:  Blood       Date:  2006-01-19       Impact factor: 22.113

5.  Cooperative effects of INK4a and ras in melanoma susceptibility in vivo.

Authors:  L Chin; J Pomerantz; D Polsky; M Jacobson; C Cohen; C Cordon-Cardo; J W Horner; R A DePinho
Journal:  Genes Dev       Date:  1997-11-01       Impact factor: 11.361

Review 6.  Adult T-cell leukemia: molecular basis for clonal expansion and transformation of HTLV-1-infected T cells.

Authors:  Toshiki Watanabe
Journal:  Blood       Date:  2017-01-23       Impact factor: 22.113

7.  Alterations of p16-pRb pathway and chromosome locus 9p21-22 in sporadic invasive breast carcinomas.

Authors:  V G Gorgoulis; E N Koutroumbi; A Kotsinas; P Zacharatos; C Markopoulos; L Giannikos; V Kyriakou; Z Voulgaris; I Gogas; C Kittas
Journal:  Mol Med       Date:  1998-12       Impact factor: 6.354

8.  Alterations of the p16-pRb pathway and the chromosome locus 9p21-22 in non-small-cell lung carcinomas: relationship with p53 and MDM2 protein expression.

Authors:  V G Gorgoulis; P Zacharatos; A Kotsinas; T Liloglou; A Kyroudi; M Veslemes; A Rassidakis; T D Halazonetis; J K Field; C Kittas
Journal:  Am J Pathol       Date:  1998-12       Impact factor: 4.307

Review 9.  Cell kinetics and cell cycle regulation in lymphomas.

Authors:  L Leoncini; S Lazzi; C Bellan; P Tosi
Journal:  J Clin Pathol       Date:  2002-09       Impact factor: 3.411

10.  Retinoblastoma protein is frequently absent or phosphorylated in anaplastic large-cell lymphoma.

Authors:  George Z Rassidakis; Raymond Lai; Marco Herling; Candy Cromwell; Annette Schmitt-Graeff; L Jeffrey Medeiros
Journal:  Am J Pathol       Date:  2004-06       Impact factor: 4.307

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