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Biomedical subjects

G Rechavi

Publications and source records attributed to G Rechavi.

At least 127 records · Page 7Linked to original sources

Analysis of rearranged immunoglobulin genes indicating a process of clonal evolution in chronic lymphocytic leukaemia.

Chronic lymphocytic leukaemia (CLL) is known to be a stable monoclonal neoplasm. In contrast to early studies demonstrating no more than two hybridizing immunoglobulin heavy chain bands corresponding to the two expected alleles, we have demonstrated an unexpected multiband pattern when the HindIII-digested DNA samples from 38 CLL patients were analysed by Southern blot hybridization using JH and C mu gene probes. In order to characterize the genetic basis for the multiband pattern, we molecularly cloned the immunoglobulin heavy chain genes of one of the patients whose leukaemic DNA sample demonstrated three hybridizing JH bands and a loss of the germline band. The cloned rearranged immunoglobulin genes could be divided, based on the restriction mapping and the hybridization with the various probes, into two basic patterns representing two alleles. In one of the cloned rearranged immunoglobulin genes a secondary rearrangement occurred that resulted in the addition of 300 base-pair long sequence into the switch region, and the creation of a HindIII restriction site. The results of the study suggest that clonal evolution occurs in some CLL, and that many of these neoplasms are indeed oligoclonal due to the accumulation of secondary genetic changes.

Antibodies, Neoplasm↗

Fluorescent in situ hybridization for the detection of t(8:14) in Burkitt's lymphoma.

Burkitt's lymphoma cells exhibit the reciprocal balanced chromosomal translocation t(8:14) in 75% of patients. Cytogenetic analysis is time-consuming, requires in vitro culture with mitogens and enables to analyse a relatively small number of cells. We evaluated the role of multicolor fluorescent in situ hybridization (FISH) in the rapid detection of t(8:14) in Burkitt's lymphoma cells. FISH detected the JH/myc translocation in 100% of the cells of five cell lines carrying the classical t(8:14) and in fresh cells obtained from a newly diagnosed Burkitt's lymphoma patient. In contrast, the translocation was not detected in the Bajb cell line that does not carry t(8:14). We conclude that FISH is a rapid and reliable diagnostic tool for the detection of the JH/myc translocation in Burkitt's lymphoma patients.

Biopsy, Needle↗

Superior vena cava syndrome associated with lymphoma.

OBJECTIVE: To evaluate the workup and treatment of children with lymphoma and superior vena cava syndrome. DESIGN: A retrospective survey. SETTING: State hospital serving as a secondary and tertiary referral center for pediatric oncology and pediatric cardiac surgery. PARTICIPANTS: Eleven children aged 11 months to 12 years diagnosed as having lymphoma or T-cell acute lymphoblastic leukemia who presented with superior vena cava syndrome during an 11-year period. INTERVENTIONS: Lymph node biopsy (two patients), thoracenthesis (five patients), bone marrow aspiration (two patients), and thoracenthesis in addition to bone marrow aspiration (two patients). All aspirates were evaluated with immunohistochemical studies. Chemotherapy was the only management intervention. RESULTS: T-cell lymphoma or leukemia accounted for nine cases and Hodgkin's disease for two cases. Respiratory symptoms occurred in 10 patients, including tracheal compression in six patients (compression was life-threatening in one patient). Diagnosis of superior vena cava syndrome was achieved in eight patients using surface-marker analysis of aspirates. The syndrome disappeared within 2 to 10 days. Seven of nine children whose conditions were diagnosed more than 1 year before this writing were alive and free of disease after mean follow-up of 37 months. CONCLUSIONS: (1) A specific diagnosis can be achieved in most children with superior vena cava syndrome and lymphoma; (2) Thoracic computed tomographic scans are essential, identifying minute pleural effusions that can aid diagnosis; (3) Anesthetic hazard is related only to severe tracheal compression; (4) Chemotherapy achieves excellent symptomatic relief; and (5) Long-term survival, without disease, is achievable.

Child↗

Replication of adeno-associated virus type 2 in human lymphocytic cells and interaction with HIV-1.

Adeno-associated virus (AAV) is a nonpathogenic parvovirus which normally requires helper adenovirus or herpes-virus for replication. We examined the growth of AAV type 2 in human lymphocytes and its possible interaction with HIV-1. Three B cell lines (CK-B, HS-2, and UC729) and four T cell lines (Molt-4, Jurkat, HUT78, and HUT78+HIV, which is persistently infected with HIV-1) were infected with AAV either in the presence or in the absence of adenovirus. AAV DNA was found in cells of all the lines following incubation with the virus, indicating absorption. AAV DNA replication occurred in most cell lines without particular preference for B or T cells, but only in the presence of helper virus, either adenovirus or Epstein-Barr virus. Expression of AAV proteins was examined by immunoblotting and ELISA, using sera specific for AAV Rep or capsid proteins. The level of AAV protein synthesis correlated with the efficiency of AAV DNA replication, and both varied between cell lines. The yield of infectious AAV was low in most cases, except in one T4 line (Jurkat), where AAV replication and protein synthesis in the presence of adenovirus were very extensive. In HUT78+HIV cells both adenovirus and AAV (in the presence of Ad2) replicated efficiently. The effects of adenovirus plus AAV coinfections on HIV-1 replication, measured by reverse-transcriptase (RT) activity, were mild. Infection with adenovirus or AAV alone resulted in a 60-70% increase in RT activity, while infection with AAV plus adenovirus resulted in a 20% decrease in RT activity. The yield of infectious AAV in this cell line was very low.

Adenoviridae Infections↗

Detection of adeno-associated virus type 2 in human peripheral blood cells.

The non-pathogenic human parvovirus, adeno-associated virus (AAV) is helper virus-dependent. However, it integrates into the cellular genome in the absence of its helper viruses. Therefore it could become a useful vector for gene therapy. Previous studies and our own results have shown that 40 to 80% of adults are seropositive for AAV and that seroconversion occurs during the first few years of life, but little is known about the route of natural infection with the virus. We used the polymerase chain reaction to detect the AAV-2 genome and identify AAV sequences within peripheral blood leukocytes (PBLs). We could detect AAV in PBLs of two of 55 healthy blood donors, and two of 16 haemophilic patients. AAV DNA replication and viral protein production in PBLs propagated in tissue culture were also examined. AAV DNA replicated very efficiently in the presence of helper adenovirus, but capsid proteins were produced at a lower level and the yield of infectious virus was very low. Our findings prove that in vivo infection of PBLs occurs, and that PBLs could mediate the spread of AAV infection to different body tissues.

Capsid↗

Structural organization of the murine c-kit proto-oncogene.

The murine Kit receptor gene on chromosome 5 has been found to be frequently involved in germline mutations and rearrangements, leading to a characteristic set of severe developmental defects, known as the W phenotype. Here we describe the structure of the murine c-kit gene, based on restriction analysis of genomic phage clones and sequence determination of exon-intron boundaries. The Kit-coding region is distributed over 21 exons, most of which have sizes that range between 100 and 200 base pairs. The 3' non-translated sequence and the 3' end of the coding region form a single large exon, which encompasses 2.3 kb and is flanked by polyadenylation signals. The entire region spans a genomic distance of at least 70 kb. Though the exonic demarcations of c-kit show remarkable similarity to those of the human c-fms gene (which encodes the highly related colony-stimulating factor 1 receptor), no correlation could be found between the sizes of introns that separate homologous exon pairs. The data suggest that evolutionary pressures were confined to the conservation of structures of coding exons, whereas flanking regions were subject to large changes, owing to insertions and deletions. Finally, the analysis of the Kit genomic structure reveals that the inherited mutations of the Kit gene that have been reported thus far occur at various dispersed positions within the gene. Hence, the entire gene appears to have as yet unknown features which cause it to be frequently subject to mutations in murine germline tissues.

Amino Acid Sequence↗

Identity of rearranged LINE/c-MYC junction sequences specific for the canine transmissible venereal tumor.

The canine transmissible venereal tumor is a naturally occurring neoplastic disease that affects the external genitalia of both sexes and is transmitted during coitus. Cytogenetic and immunologic studies demonstrated that tumors from different parts of the world are very similar, suggesting that they are transferred from one animal to another by the transplantation of viable cells. We found that the c-MYC oncogene was rearranged in this tumor by the insertion of a transposable genetic element sequence (known as LINE, long interspersed element) 5' to the first exon. The amplification of a DNA segment located in the junction of the LINE genome and c-MYC upstream sequences enabled the testing of the similarity of transmissible venereal tumor samples collected independently in different parts of the world. Oligonucleotide primers flanking the LINE/c-MYC junction were used to amplify a 340-base-pair segment and nested primers amplified a 280-base-pair segment. A fifth oligonucleotide used as a probe contained the actual junction sequence. All of the tumors analyzed revealed the existence of the specific bands, which were absent in normal canine DNA samples. The amplified segments obtained from all of the tumors analyzed were identical in size and nucleotide sequence, suggesting transmission of the original rearranged cell itself, as opposed to independent events of LINE insertion in a "hot spot."

Animals↗

EBV genome and immunoglobulin gene rearrangement in the differential diagnosis of nasopharyngeal carcinoma and lymphoma.

Head and neck tumors include nasopharyngeal carcinoma (NPC) and lymphoma. The differential diagnosis of these tumors is based on histology, immunocytochemical staining, and EBV serology. In rare cases it might be difficult to distinguish between NPC and lymphoma in HE section or biopsies. DNA hybridization with cloned EBV and human immunoglobulin gene fragments allows the detection of EBV-related sequences and immunoglobulin gene rearrangements. The presence of EBV genome supports the diagnosis of NPC or EBV related BL, while rearrangement of immunoglobulin genes points to B-cell lymphoma. The diagnosis in 11 patients suspected of head and neck tumors was carried out by hybridization of DNA extracted from the tumors and assayed with cloned EBV and IgHCJ DNA probes. One patient proved to have EBV-associated BL based on positive hybridization with EBV probes and immunoglobulin rearrangement, presenting a unique hybridization with cloned EBV DNA BamHI W fragment, with bands of 3.2 and 3.9 kb. BL was confirmed in this patient by demonstration of c-myc rearrangement. A second patient was negative in hybridization with EBV, and positive for immunoglobulin rearrangement, and therefore was diagnosed as having B-cell lymphoma. In seven patients NPC was confirmed by hybridization with EBV-DNA probes. In two patients, both NPC and B-cell lymphomas were excluded.

Adolescent↗

Lack of bcr rearrangement in juvenile chronic myeloid leukemia.

Juvenile chronic myeloid leukemia (JCML) is an unusual subtype of children's leukemia, characterized by unique clinical presentation. Recent studies revealed several biological features, distinguishing from those observed in adult type chronic myeloid leukemia (ACML). The majority of ACML cases are characterized by the presence of an hybrid bcr-abl rearranged gene. In an effort to elucidate the molecular basis of this unusual leukemia we looked for bcr rearrangement in six JCML cases. No bcr rearrangement was identified in any of the analyzed samples. Together with previous studies from JCML cases, JCML has a different mechanism of leukomogenesis from ACML.

Blotting, Southern↗