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Biomedical subjects

F Mitelman

Publications and source records attributed to F Mitelman.

At least 127 records · Page 7Linked to original sources

Chromosome aberrations in prophylactic mastectomies from women belonging to breast cancer families.

Short-term cultures of samples from eight prophylactic mastectomies from five unrelated women who were genetically predisposed to breast cancer were analyzed cytogenetically. Clonal chromosome abnormalities were detected in five breasts. Three samples from two women had aberrations involving the short arm of chromosome 3, with a breakpoint in 3p14 in common. Three samples from three women had rearrangements of 1q. Two of them, one of which also displayed a 3p14 rearrangement, shared a breakpoint in 1q41. Both 1q41 and, in particular, 3p14 have been reported to be rearranged frequently in malignant breast proliferations. Whether alterations of genes in these bands are essential in mammary tumorigenesis and, if so, whether they are equally important in sporadic and in hereditary cases remains to be explored.

Adult↗

Genomic PCR detects tumor cells in peripheral blood from patients with myxoid liposarcoma.

Myxoid liposarcoma (MLS) is the most common subtype of liposarcoma. The cytogenetic hallmark of MLS is the pathognomonic t(12;16)(q13;p11), present in more than 85% of cases. The translocation leads to the fusion of the CHOP and FUS genes at 12q13 and 16p11, respectively, and the generation of a FUS/CHOP hybrid protein. The presence of a tumor-specific chimeric gene makes it possible to identify MLS cells by polymerase chain reaction (PCR). We have analyzed peripheral blood samples obtained during a 10-year period at diagnosis of primary and/or recurrent disease in 19 MLS patients with t(12;16) and in one MLS patient with t(12;22;20), resulting in the fusion of the CHOP and EWS genes. Nested PCR on genomic DNA from blood samples amplified FUS/CHOP hybrid fragments in three patients and EWS/CHOP in the patient with t(12;22;20). There was no obvious association between PCR findings and clinical outcome, but larger series are needed to draw any firm conclusions.

Adult↗

Cytogenetic abnormalities in an in situ ductal carcinoma and five prophylactically removed breasts from members of a family with hereditary breast cancer.

Short-term cultures of tissue samples from three bilateral prophylactic mastectomies and one in situ ductal carcinoma from four women belonging to a family with hereditary breast cancer were cytogenetically analyzed. Clonal chromosome abnormalities were detected in five of the six prophylactically removed breasts, all of which had the histologic diagnosis epithelial hyperplasia without atypia, and in the in situ carcinoma. The same karyotypic imbalance, a loss of 3p12-14, was detected in the in situ carcinoma as well as in one of the hyperplasias, indicating that these bands may harbor a pathogenetically relevant gene in this breast cancer family. The finding of chromosome aberrations in clonal proportions in the prophylactically removed breasts indicates that a neoplastic process was already present, lending support to the view that prophylactic bilateral mastectomy in these high-risk individuals prevented the development of breast carcinoma.

Breast Neoplasms↗

Evidence of somatic mutations in osteoarthritis.

We examined, cytogenetically and by in situ hybridization (ISH) techniques, the synovia, osteophytes, and articular cartilage from 32 patients with pronounced osteoarthritis (OA), a prevalent form of arthropathy characterized by progressive reduction of articular cartilage, and synovial samples from 17 control patients. In short-term cultures, clonal chromosome aberrations, in particular the gain of chromosomes 7 (+7) and 5 (+5), were found to be strongly associated with OA. These aberrations were found in almost 90% of the cultures from synovia and osteophytes, whereas only 1/11 synovial samples from joints unequivocally unaffected by OA had cells with +5 or +7. The in vivo nature of trisomy 7 was demonstrated by ISH on uncultured cells, and serial passaging showed that cells with +7 had a proliferative advantage in vitro. Thus, the combined data indicate that cells with somatic mutations appear early and may be influential in the disease process leading to OA.

Adult↗

Cytogenetic findings in four malignant mixed mesodermal tumors of the ovary.

Short-term cultures of four malignant mixed mesodermal tumors of the ovary were cytogenetically analyzed. The primary tumor was examined in three cases, whereas in one case the sample was obtained from a residual tumor mass after chemotherapy. The tumor sampled after cytostatic treatment had a relatively simple karyotype with numerical changes that included pentasomy 12 and an i(1)(q10) as the only structural abnormality. Karyotypic analysis of the three primary tumors revealed extensive structural as well as numerical aberrations, i.e., a picture similar to that seen in the few malignant mixed mesodermal tumors with karyotypic anomalies described previously. Rearrangements of chromosome 1, leading to loss of distal 1p, and homogeneously staining regions have so far been the most frequent cytogenetic changes in this tumor type. Malignant mixed mesodermal tumors of the ovary thus seem to be karyotypically identical to the more numerous mixed mesodermal tumors of uterine origin, and they do not differ substantially in this respect from pure ovarian carcinomas.

Chromosome Aberrations↗

No FISH evidence for trisomy 7 in normal or leukemic bone marrow.

Trisomy 7 has been found as the sole chromosomal anomaly in both benign and malignant tumors, as well as in nonneoplastic lesions. It has been reported that +7 may occur in tumor-infiltrating as well as in peripheral T cell and in the thymus. The precursor cells, which mature in the thymus to T lymphocytes, originate in the bone marrow and the present study was undertaken to investigate whether cells carrying an extra chromosome 7 can be detected there. Bone marrow samples from five hematologically normal individuals and 12 children with acute lymphoblastic leukemia (ALL) were analyzed by interphase fluorescence in situ hybridization (FISH) using a chromosome 7 centromere-specific probe. Half of the ALLs were karyotypically normal, whereas the other half displayed clonal abnormalities (one pseudodiploid and five hyperdiploid karyotypes, none of which had +7). The FISH analysis showed no evidence of cells with trisomy 7 in the bone marrow samples from the controls or ALLs. This suggests that the gain of a chromosome 7 by T lymphocytes does not occur before the bone marrow precursor cells are conditioned in the thymus.

Adolescent↗

Dichotomy of hyperdiploid acute lymphoblastic leukemia on the basis of the distribution of gained chromosomes.

From literature data on 3,149 cytogenetically abnormal cases of acute lymphoblastic leukemia (ALL) 1,118 clones with a gain of 1-11 chromosomes were retrieved. Within each subgroup of polysomy, the distribution of gained chromosomes was clearly nonrandom. In general, two different patterns were seen in ALLs with 1-5 and 6-11 extra chromosomes, respectively. In the former group, chromosomes X, 8, and 21 were consistently over-represented, and in the latter most or all polysomy subgroups contained an excess of chromosomes X, 4, 6, 10, 14, 17, 18, and 21. Chromosomes Y, 1-3, 5, 7, 9, 11-13, 15, 16, 19, and 20 were never significantly over-represented in any polysomy subgroup. The results of the present study confirm the nonrandom nature of chromosomal gain in ALL and suggest that when ALLs are to be subdivided into those with moderate and pronounced hyperdiploidy, the former should contain cases with 47-51 chromosomes and the latter those with 52-57 chromosomes.

Humans↗

Karyotypic characteristics of borderline malignant tumors of the ovary: trisomy 12, trisomy 7, and r(1) as nonrandom features.

Clonal karyotypic abnormalities were detected in five of 14 cytogenetically analyzed borderline malignant ovarian tumors of clinical stages I-II. One mucinous and one seropapillary tumor had trisomy 7 and r(1)(p36q42) as the sole chromosome abnormality, respectively. Trisomy 12 was found in the remaining three cases. It was the only change in one mucinous and one serous tumor, whereas the third, a seropapillary borderline tumor, had the karyotype 49,XX,+5,+8, +12. These findings, especially when collated with those of previous reports on ovarian borderline tumor cytogenetics, indicate that +12 is the most consistent chromosomal aberration in this group of neoplasms and that also +7 and r(1) are nonrandom features. From the karyotypic point of view, benign ovarian tumors and well-differentiated carcinomas are similar to borderline ovarian tumors, with the possible exception that the former have no tendency to form r(1). Highly malignant carcinomas, on the other hand, are typically much more complex. Chromosome-level changes therefore cannot account for the putative phenotypic passage through the most innocuous tumor stages as epithelial ovarian neoplasms go from benign to fully malignant.

Adenocarcinoma, Mucinous↗

Chromosome rearrangements in synovial chondromatous lesions.

Short-term cultures from one synovial chondroma and three cases of synovial chondromatosis, a lesion for which no previous karyotypic information exists, were cytogenetically analysed. Whereas the chondroma displayed the relatively simple karyotype 46,XY,add(12)(q13),der(17)t(12;17)(q13;q21), more complex changes were found in the three cases of chondromatosis: case 1, 47,XY,der(1)inv(1)(p13q25)del (1)(q25q32), t(1;12)(q25;q13), + 5,der(12)add(12)(p11)t(1;12)(p22;q13); case 2, 47,XY,add(10)(q26), + 20/46 idem,-6/46,XY,t(2;4)(q33;q21), add(21)(p11); and case 3, 44,XY,add(1)(p36), del(1)(p13p22),add(6)(p25), del(7) (q22q32),del(10)(q21),add(11)(q13),-17,-18. The cytogenetic findings strongly suggest that synovial chondro-matosis is a clonal proliferation. Apart from a near-diploid chromosome number, the only recurrent cytogenetic features among the four cases were loss of band 10q26 and rearrangements of 1p13 and 12q13, found in two cases each. While chromosome bands 1p13 and 10q26 have not been reported to be involved in other types of benign chondromatous lesions, the 12q13-15 segment is recurrently rearranged in a variety of chondromatous tumours, e.g. pulmonary chondroid hamartomas. The present finding of translocations affecting band 12q13 in two of the cases emphasises that, irrespective of the anatomical localisation of the tumours, rearrangements of genes in 12q13-15 are important in the development of a large subset of benign and malignant cartilage-forming tumours.

Aged↗

The translocation t(8;16)(p11;p13) of acute myeloid leukaemia fuses a putative acetyltransferase to the CREB-binding protein.

The recurrent translocation t(8;16)(p11;p13) is a cytogenetic hallmark for the M4/M5 subtype of acute myeloid leukaemia. Here we identify the breakpoint-associated genes. Positional cloning on chromosome 16 implicates the CREB-binding protein (CBP), a transcriptional adaptor/coactivator protein. At the chromosome 8 breakpoint we identify a novel gene, MOZ, which encodes a 2,004-amino-acid protein characterized by two C4HC3 zinc fingers and a single C2HC zinc finger in conjunction with a putative acetyltransferase signature. In-frame MOZ-CBP fusion transcripts combine the MOZ finger motifs and putative acetyltransferase domain with a largely intact CBP. We suggest that MOZ may represent a chromatin-associated acetyltransferase, and raise the possibility that a dominant MOZ-CBP fusion protein could mediate leukaemogenesis via aberrant chromatin acetylation.

Acetyltransferases↗

t(3;21)(q26;q22) with AML1 rearrangement in a de novo childhood acute monoblastic leukaemia.

t(3;21)(q26;q22) is a recurrent chromosomal abnormality in Philadelphia-positive chronic myeloid leukaemia in blast crisis and in treatment-related myelodysplastic syndrome and acute myeloid leukaemia. The molecular consequences of the t(3;21) are presently being unravelled; various transcripts between the AML1 gene in 21q22 and several unrelated genes, i.e. EAP, EVI1 and MDS1, in 3q26 are generated, resulting in the formation of a chimaeric transcription factor. The t(3;21) has only rarely been described in de novo leukaemias and never before in an acute leukaemia in a child. We here present the clinical, cytogenetic and molecular genetic findings in a boy with a de novo acute monoblastic leukaemia with t(3;21)(q26;q22) and AML1 rearrangement.

Blotting, Southern↗

Combined morphologic and karyotypic study of 28 myxoid liposarcomas. Implications for a revised morphologic typing, (a report from the CHAMP Group).

Cytogenetic analysis carried out in 28 adipose tissue tumors diagnosed microscopically as myxoid liposarcoma (ML) revealed a t(12;16)(q13:p11) chromosomal translocation in 26 of the 28 cases. Morphologically, these tumors were subclassified into the following categories: well-differentiated, six cases: poorly differentiated round cell type, 17 cases: poorly differentiated spindle cell type, five cases. Poorly differentiated ML behaved in a more aggressive fashion than the well-differentiated tumors. The results of this study confirm the consistency and specificity of the t(12;16)(q13:p11) translocation as the genetic marker of ML, support the contention that liposarcomas with round cells belong to the ML category, and confirm Stout's proposal for the existence of a poorly differentiated ML composed of spindle cells. Cytogenetic analysis may be helpful in the differential diagnosis of ML with atypical lipomatous tumors, which is characteristically associated with ring and giant marker chromosomes, and of ML with lipoblastoma, which is typically associated with 8q alterations. The existence of a mixed ML-atypical lipomatous tumor remains questionable. The genetic events associated with the greater aggressiveness of the poorly differentiated types of ML remain to be determined.

Adult↗

Combined morphologic and karyotypic study of 59 atypical lipomatous tumors. Evaluation of their relationship and differential diagnosis with other adipose tissue tumors (a report of the CHAMP Study Group).

Fifty-nine cases of atypical lipomatous tumors (ALT) of soft tissue (atypical lipomas, well-differentiated liposarcomas) were studied morphologically and cytogenetically as part of an international collaborative study. Forty-nine cases were deeply seated (including retroperitoneum), and 10 were superficial. Clonal chromosomal abnormalities were found in 55 cases (93%). Supernumerary ring or giant marker chromosomes (RGCs), the sole consistent alteration, were found in 37 ALTs (63%). They were more common in tumors that were large (p < 0.001), deeply seated (p < 0.005), that contained lipoblasts (p < 0.05), and that had marked cytologic atypia (p < 0.05). In a relatively short follow-up period (average, 3 years), only three of 59 cases recurred, one resulting in the patient's death. All three cases had RGCs. Also, five of the six cases that underwent dedifferentiation had RGCs, indicating that RGCs are associated not only with low-grade malignant behavior (in the form of local recurrence) but also with the potential for tumor progression. When the karyotypic profile of ALT was compared with that of 233 other types of adipose tissue tumors similarly analyzed by the authors, a statistically highly significant correlation (p < 0.0001) was found between ALT and RGCs. These results support the existence of ALT as a distinct tumor subtype that is different from ordinary lipoma and from spindle or pleomorphic lipoma, albeit histogenetically closely related to them. It also supports the proposed pathogenetic link between ALT and dedifferentiated liposarcoma. The association between chromosomal and morphologic findings indicates the potential role of karyotypic analysis in the differential diagnosis of ALT with ordinary lipoma, spindle or pleomorphic lipoma, hibernoma, and myxoid liposarcoma.

Adult↗

Correlation between clinicopathological features and karyotype in lipomatous tumors. A report of 178 cases from the Chromosomes and Morphology (CHAMP) Collaborative Study Group.

Soft tissue tumors commonly show cytogenetic abnormalities, some of which are tumor specific. Lipomatous tumors represent the largest category of soft tissue neoplasms, and numerous karyotypic aberrations have been identified. However, clear-cut correlation between morphology and karyotype has not been undertaken on a systematic basis in a double-blind setting. The morphological features and histological diagnosis of 178 lipomatous neoplasms were reviewed independently without knowledge of the clinical data. The consensus diagnoses were then correlated with the clinical findings and compared with the tumors' karyotypes, using G-banded preparations from short-term cultures. The data were collated by a multicenter collaborative group of pathologists, geneticists, and surgeons. Clonal chromosomal abnormalities were identified in 149 cases studied (84%) and, to a large extent, the karyotype correlated with the morphological diagnosis. Specifically, 26 (96%) of 27 myxoid liposarcomas and its poorly differentiated variants showed a t(12;16); 29 (78%) of 37 atypical lipomatous tumors (including 5 dedifferentiated cases) showed ring chromosomes; 74 (80%) of 93 subcutaneous and intramuscular lipomas had karyotypic aberrations affecting mainly 12q, 6p, and 13q; 7 of 8 spindle cell and pleomorphic lipomas had aberrations of 16q; 3 lipoblastomas showed 8q rearrangements; and 2 hibernomas showed 11q abnormalities. We conclude that cytogenetic abnormalities are common in lipomatous tumors, correlate reliably with morphological sub-type in many cases, and can be of diagnostic value in histologically borderline or difficult cases.

Adolescent↗

Abberant cytogenetic evolution pattern of Philadelphia-positive chronic myeloid leukemia treated with interferon-alpha.

The cytogenetic evolution of 32 Philadelphia (Ph)-positive chronic myeloid leukemias (CML) receiving interferon-alpha (IFN-alpha) therapy was compared to the patterns in untreated CML and cases treated with busulfan (Bu), hydroxyurea (Hy), and allogeneic bone marrow transplantation (BMT). Half of the CML receiving IFN-alpha had at least one of the well-known major or minor route aberrations whereas 16 cases displayed unusual secondary abnormalities, of which only del(7p) and del(13q) were recurrent; a frequency significantly higher than in CML without therapy or after Bu and Hy treatment (P < 0.001) but similar to the one found post-BMT. The incidence of cases with cytogenetically divergent subclones, ie cell populations with unrelated aberrations in addition to the t(9;22), was also higher in the IFN-alpha group compared to the untreated, Bu and Hy groups (P < 0.01) but similar to the post-BMT group. Finally, 14 of the 32 IFN-alpha-treated CML displayed cytogenetic evolution already during the chronic phase; again a higher incidence than in the untreated, Bu and Hy groups (P < 0.001) but not different from the post-BMT group. These findings strongly indicate that IFN-alpha, directly or indirectly, can induce clones with aberrant chromosomal evolution patterns to evolve and proliferate, but the mechanisms underlying these cytogenetic peculiarities remain to be elucidated.

Adult↗

Trisomy 20 is a primary chromosome aberration in desmoid tumors.

Cytogenetic analysis revealed trisomy 20 in 4 desmoid tumors: in 2 cases as the sole aberration, in 1 together with +X, -Y and -13 and in 1 with +8 and a supernumerary marker chromosome. Our findings indicate that gain of chromosome 20 is an early event in the development of a large subset of desmoid tumors and that it is as frequent as +8, the only consistent chromosomal change previously reported in this tumor type. The non-random occurrence of trisomies 8 and 20 in desmoid tumors indicates shared pathogenetic mechanisms with infantile fibrosarcoma, a fibrous tissue tumor characterized by various combinations of trisomies for chromosomes 8, 11, 17 and 20.

Adult↗

Cytogenetic evolution patterns in non-Hodgkin's lymphoma.

Secondary chromosomal aberrations were surveyed in non-Hodgkin's lymphomas (NHL) reported in the literature with one of the following, presently recognized, primary abnormalities: t(2;5), +3, t(3;14), del(6q), +X, and -Y. Of 2,175 NHLs with clonal karyotypic changes, 908 (42%) had one of the 13 selected primary chromosome rearrangements, and 670 (74%) of these lymphomas displayed additional abnormalities. The type and frequency of the secondary aberrations were ascertained and then correlated with both the type of primary abnormality and morphologic subtype; low-, intermediate, and high-grade according to the Working Formulation. The incidence of secondary aberrations differed not only among the primary abnormality subgroups, from 0% in del(11q) NHLs to 93% in t(3;14) lymphomas (P < .001) but also between B- and T-cell NHLs (78% versus 55%, P< .001) and among the different histologic subgroups: 66% in low-, 85% in intermediate-, and 71% in high-grade lymphomas (P < .001). The mean number of secondary changes per case also varied among the primary abnormalities, from none in del(11q) NHLs to 12.0 in inv(14) lymphomas (P < .001), and among the morphologic subtypes: 4.6 in low-, 6.7 in intermediate-, and 3.6 in high-grade NHL (P < .001). Recurrent secondary aberrations were found in 6 of the 13 primary abnormality subgroups: t(2;5), t(3;14), t(8;14), t(11;14), inv(14), and t(14;18). The most frequent secondary aberrations were +X, -Y, dup(1q), del(6q) varied both within and among the primary abnormalities; the most frequent imbalances were a gain of 1q23-31 and losses of 6q21, 6q23, and 6q25. Other common imbalances were deletions of 1p31-36, 1q31-44, 2q34-37, 7q35-36, 9p22-24, 11q23-25, 13q13-21, and duplication of 12q13-22. The distribution of the secondary changes was clearly nonrandom with the most common anomalies being -Y and +7 in t(2;5); +X, del(6q), and +7 in t(3;14); dup(1q) and +7 in t(8;14); -Y, del(6q), and -13 in t(11;14); del(6q), -17, and -18 in inv(14); and del(6q), +7, and +12 in t(14;18) NHLs. In general, the secondary aberrations were similar in lymphomas of different histologic subtypes but with the same primary abnormality, although some significant differences were discerned: +3, del(6q), +7, and +18 wee more common (P < .01) in intermediate-grade than in high-grade t(8;14) NHLs; monosomy 13 occurred only in intermediate-grade t(11;14) NHLs (P < .05); and +7 and t(8;14)/t(8;22) were more frequent (P < .01 and P< .001, respectively) in high-grade than in low- and intermediate-grade t(14;18) NHLs.(ABSTRACT TRUNCATED AT 400 WORDS)

Chromosome Aberrations↗