PubMed Health⌕ Search

Biomedical subjects

Myriam Goldstein

Publications and source records attributed to Myriam Goldstein.

5 recordsLinked to original sources

Array-based comparative genome hybridization in clinical genetics.

Abnormalities in DNA copy number are frequently found in patients with multiple anomaly syndromes and mental retardation. Array-based comparative genomic hybridization (array-CGH) is a high-resolution, whole-genome technology that improves detection of submicroscopic aberrations underlying these syndromes. Eight patients with mental disability, multiple congenital anomalies, and dysmorphic features were screened for submicroscopic chromosomal imbalances using the GenoSensor Array 300 Chip. Subtelomeric aberrations previously detected by fluorescence in situ hybridization (FISH) analysis were confirmed in two patients, and accurate diagnosis was provided in two previously undiagnosed complex cases. Microdeletions at 15q11.2-q13 in a newborn with hypotonia, cryptorchidism, and hypopigmentation were detected with few discrepancies between the array results and FISH analysis. Contiguous microdeletion of GSCL, HIRA and TBX1 genes at 22q11.2 was identified in a previously undiagnosed boy with an unusual presentation of the VCF/DiGeorge spectrum. In a newborn with aniridia, a borderline false-negative WT1 deletion was observed, most probably because of differences between the size of the genomic deletion and the microarray probe. A false-positive rate of 0.2% was calculated for clone-by-clone analysis, whereas the per patient false-positive rate was 20%. Array-CGH is a powerful tool for the rapid and accurate detection of genetic disorders associated with copy number abnormalities and can significantly improve clinical genetic diagnosis and care.

Abnormalities, Multiple↗

Novel genes implicated in embryonal, alveolar, and pleomorphic rhabdomyosarcoma: a cytogenetic and molecular analysis of primary tumors.

Rhabdomyosarcoma, the most common pediatric soft tissue sarcoma, likely results from deregulation of the skeletal myogenesis program. Although associations between PAX3, PAX7, FOXO1A, and RMS tumorigenesis are well recognized, the entire spectrum of genetic factors underlying RMS development and progression is unclear. Using a combined approach of spectral karyotyping, array-based comparative genomic hybridization (CGH), and expression analysis, we examined 10 primary RMS tumors, including embryonal, alveolar, and the rare adult pleomorphic variant, to explore the involvement of different genes and genetic pathways in RMS tumorigenesis. A complete karyotype established for each tumor revealed a high aneuploidy level, mostly tetraploidy, with double minutes and additional structural aberrations. Quantitative expression analysis detected the overexpression of the AURKA gene in all tumors tested, suggesting a role for this mitotic regulator in the aneuploidy and chromosomal instability observed in RMS. Array-based CGH analysis in primary RMS tumors detected copy number changes of genes involved in multiple genetic pathways, including transcription factors such as MYC-related gene from lung cancer and the cytoskeleton and cell adhesion-encoding genes laminin gamma-2 and p21-activated kinase-1. Our data suggest the involvement of genes encoding cell adhesion, cytoskeletal signaling, and transcriptional and cell cycle components in RMS tumorigenesis.

Adolescent↗

The clinical application of spectral karyotyping (SKY) in the analysis of prenatally diagnosed extra structurally abnormal chromosomes (ESACs).

OBJECTIVE: The prenatal detection of de novo extra structurally abnormal chromosomes (ESACs) presents a challenge because the associated risk for congenital anomaly ranges from 100% to practically none, depending on the chromosomal origin. Despite the use of standard cytogenetic techniques and even fluorescence in situ hybridization (FISH), the origin of some ESACs often remains elusive. Spectral karyotyping (SKY) is a molecular cytogenetic technique based on the simultaneous analysis of all chromosomes using a unique probe mix that allows the rapid identification of all chromosomes in 24 colors. The purpose of this study was to evaluate the use of SKY in the characterization of prenatally diagnosed de novo ESACs. METHODS: This series includes five cases of de novo ESACs detected prenatally in routine amniocentesis samples performed for advanced maternal age. Cases of inherited ESACs or ESACs defined by standard cytogenetic techniques were excluded. RESULTS: SKY analysis yielded valuable information, particularly in cases of nonsatellited ESACs: a der(18) and a ring(Y). In a case of a unisatellited der(15), SKY corroborated data obtained by standard cytogenetic techniques and FISH. Finally, in two cases of small bisatellited chromosomes, SKY was noncontributory. CONCLUSIONS: While SKY may be a valuable tool in some cases, especially nonsatellited and ring ESACs, it does have limitations and should be used judiciously in conjunction with other cytogenetic techniques.

Adult↗

Combined cytogenetic and array-based comparative genomic hybridization analyses of Wilms tumors: amplification and overexpression of the multidrug resistance associated protein 1 gene (MRP1) in a metachronous tumor.

Tumor samples from a variety of Wilms tumors (WT) obtained from three patients were analyzed by cytogenetic and array-based comparative genomic hybridization (CGH) methods. The tumors represented different stages of tumorigenesis and included a unilateral primary WT and contralateral nephrogenic rest (case 1), a primary WT and a contralateral metachronous WT (case 2), and a recurrent WT with lung metastases (case 3). All six specimens exhibited abnormal karyotypes characteristic of different WT levels of progression. Array-based CGH examinations of 57 genes that are commonly amplified in various cancers revealed a 2.6-fold genomic amplification of the multidrug resistance-associated protein 1 (MRP1) gene in the metachronous WT, but no amplification in the primary tumor. This sole amplification event in our series was also confirmed by Southern blot analysis. Furthermore, quantitative reverse transcriptase polymerase chain reaction showed a sixfold overexpression of the MRP1 gene in this metachronous WT relative to the primary tumor. Our findings suggest that for most of the genes examined in this series genomic amplification does not play a role in WT pathogenesis. Isolated amplification and overexpression of the MRP1 gene in the metachronous WT, however, suggest that this gene may be an important factor in the development and progression of metachronous tumors.

Blotting, Southern↗

Multiple genes in human 20q13 chromosomal region are involved in an advanced prostate cancer xenograft.

We analyzed a prostate cancer xenograft derived from a locally advanced tumor using combined cytogenetic, array-based comparative genomic hybridization and expression analyses. This analysis revealed that genes in the 20q13 chromosomal region, CSE1L, ZNF217, MYBL2, and STK15, were significantly overexpressed in this tumor. The expression pattern of these genes was then confirmed in two large human prostate cancer microarray databases. Furthermore, the MYBL2 and STK15 have been significantly overexpressed in prostate metastases, allowing a clear distinction between localized tumors and metastases. Our data suggest these genes to be involved in advanced stages of prostate tumorigenesis and as such, they may serve as markers for tumor progression.

Adenocarcinoma↗