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M L Cleary

Publications and source records attributed to M L Cleary.

At least 73 records · Page 4Linked to original sources

Nodular lymphocyte predominance Hodgkin's disease. A distinct clinicopathological entity.

This article reviews the evidence that the nodular form of lymphocyte predominance Hodgkin's disease ("nodular paragranuloma") should be recognised as a distinct clinico-pathological entity. The disease is characterised histologically by very large primary lymphoid follicles, containing polytypic small B lymphocytes and extensive meshworks of follicular dendritic cells. The "L and H" or "popcorn" cells scattered within the nodules show clear differences from classical Reed-Sternberg cells, both in their cytological appearance and in their marker profile, being frequently negative for CD15 and for the EBV genome, but often positive for B cell antigens, CD45 (leucocyte common antigen), CDw75 (LN1), epithelial membrane antigen (EMA) and J chain. These findings suggest that L and H cells may be Ig-synthesising monoclonal B cells. Nodular lymphocyte predominance Hodgkin's disease pursues a much more indolent courses that classical Hodgkin's disease, and long term survival is common. It has other distinctive clinical features, e.g. a unimodal age distribution, a predilection to involve single lymph nodes, and a very low incidence of thymic involvement. There is a tendency for diffuse large cell non-Hodgkin's lymphoma, usually of B cell type, to develop during the course of the disease. This type of Hodgkin's disease thus has many features that distinguish it from the nodular sclerosis and mixed cellularity varieties, and it is hoped that future studies will gather more information on its clinical behavior and on the nature of the putative neoplastic cells, as well as exploring different protocols for its treatment.

Hodgkin Disease↗

A proposal for classification of lymphoid neoplasms (by the International Lymphoma Study Group).

A new classification of lymphoid neoplasms, mostly based on existing terminology, is proposed by the International Lymphoma Study Group. The proposed classification was reached through a consensus of the members, despite their diverse backgrounds, and consists of a listing of currently recognized clinicopathological entities. These tumours are divided into three major categories: B-cell neoplasms, T-cell and postulated natural killer cell neoplasms, and Hodgkin's disease. The characterization of each entity is based on a synthesis of all available information. This concept departs from a purely morphological approach to lymphoma classification, which is considered to be inadequate, because many biologically distinctive lymphoma types can exhibit a broad and overlapping morphological spectrum. Some entities are provisional, pending further data to confirm that their recognition is reproducible. The salient clinicopathological features of each entity are summarized in this review.

Hodgkin Disease↗

Transformation properties of the E2a-Pbx1 chimeric oncoprotein: fusion with E2a is essential, but the Pbx1 homeodomain is dispensable.

The t(1;19) chromosomal translocation in acute lymphoblastic leukemias creates chimeric E2a-Pbx1 oncoproteins that can act as DNA-binding activators of transcription. A structural analysis of the functional domains of E2a-Pbx1 showed that portions of both E2a and Pbx1 were essential for transformation of NIH 3T3 cells and transcriptional activation of synthetic reporter genes containing PBX1 consensus binding sites. Hyperexpression of wild-type or experimentally truncated Pbx1 proteins was insufficient for transformation, consistent with their inability to activate transcription. When fused with E2a, the Pbx-related proteins Pbx2 and Pbx3 were also transformation competent, demonstrating that all known members of this highly similar subfamily of homeodomain proteins have latent oncogenic potential. The oncogenic contributions of E2a to the chimeras were localized to transactivation motifs AD1 and AD2, as their mutation significantly impaired transformation. Either the homeodomain or Pbx1 amino acids flanking this region could mediate transformation when fused to E2a. However, the homeodomain was not essential for transformation, since a mutant E2a-Pbx1 protein (E2a-Pbx delta HD) lacking the homeodomain efficiently transformed fibroblasts and induced malignant lymphomas in transgenic mice. Thus, transformation mediated by the chimeric oncoprotein E2a-Pbx1 is absolutely dependent on motifs acquired from E2a but the Pbx1 homeodomain is optional. The latter finding suggests that E2a-Pbx1 may interact with cellular proteins that assist or mediate alterations in gene expression responsible for oncogenesis even in the absence of homeodomain-DNA interactions.

3T3 Cells↗

DNA-binding and transcriptional regulatory properties of hepatic leukemia factor (HLF) and the t(17;19) acute lymphoblastic leukemia chimera E2A-HLF.

The t(17;19) translocation in acute lymphoblastic leukemias results in creation of E2A-hepatic leukemia factor (HLF) chimeric proteins that contain the DNA-binding and protein dimerization domains of the basic leucine zipper (bZIP) protein HLF fused to a portion of E2A proteins with transcriptional activation properties. An in vitro binding site selection procedure was used to determine DNA sequences preferentially bound by wild-type HLF and chimeric E2A-HLF proteins isolated from various t(17;19)-bearing leukemias. All were found to selectively bind the consensus sequence 5'-GTTACGTAAT-3' with high affinity. Wild-type and chimeric HLF proteins also bound closely related sites identified previously for bZIP proteins of both the proline- and acidic amino acid-rich (PAR) and C/EBP subfamilies; however, E2A-HLF proteins were significantly less tolerant of certain deviations from the HLF consensus binding site. These differences were directly attributable to loss of an HLF ancillary DNA-binding domain in all E2A-HLF chimeras and were further exacerbated by a zipper mutation in one isolate. Both wild-type and chimeric HLF proteins displayed transcriptional activator properties in lymphoid and nonlymphoid cells on reporter genes containing HLF or C/EBP consensus binding sites. But on reporter genes with nonoptimal binding sites, their transcriptional properties diverged and E2A-HLF competitively inhibited activation by wild-type PAR proteins. These findings establish a spectrum of binding site-specific transcriptional properties for E2A-HLF which may preferentially activate expression of select subordinate genes as a homodimer and potentially antagonize expression of others through heteromeric interactions.

Base Sequence↗

Fusion with E2A alters the transcriptional properties of the homeodomain protein PBX1 in t(1;19) leukemias.

The t(1;19) chromosomal translocation is observed in pre-B cell acute lymphoblastic leukemias and results in expression of chimeric E2A-PBX1 proteins that contain transcriptional activation domains from E2A and the homeodomain of PBX1. Since homeodomains mediate DNA-binding, a potential model for the action of E2A-PBX1 is that it disrupts the transcriptional regulation of genes normally controlled by PBX1 or its closely-related family members PBX2 or PBX3. Using a binding site selection assay, we identified a consensus nucleotide sequence ATCAATCA specifically bound by the PBX1 homeodomain and those of its closely-related family members PBX2 and PBX3. An endogenous protein with the properties of PBX3b specifically bound to this sequence in nuclear extracts of precursor B cells. Transfection of reporter genes containing PBX binding sites linked to a minimal promoter demonstrated transactivation by E2A-PBX1 fusion protein dependent upon presence of the homeodomain. In contrast, wild-type PBX proteins were incapable of activating transcription. The striking differences in transcriptional properties of fusion and wild-type PBX proteins provides strong functional evidence for the importance of aberrant transcriptional regulation in the genesis of t(1;19)-bearing leukemias.

Base Sequence↗

The bcl-2 protein is inserted into the outer membrane but not into the inner membrane of rat liver mitochondria in vitro.

The bcl-2 gene encodes a 26 kDa protein, overexpression of which blocks cell apoptosis. Since conflicting data have been reported concerning the localization of the Bcl-2 protein with mitochondrial inner and outer membranes, we analyzed in vitro import of the human Bcl-2 protein into isolated rat liver mitochondria. The Bcl-2 protein translated in rabbit reticulocyte lysate was efficiently inserted into the mitochondrial outer rather than the inner membrane in a membrane potential-independent manner. The carboxyl-terminal hydrophobic stretch is essential for the Bcl-2 protein to integrate into the outer membrane. Binding of the Bcl-2 protein to the mitochondria was not affected by pretreatment of the mitochondria with trypsin, indicating that the Bcl-2 protein does not require protease-sensitive mitochondrial surface components for its membrane insertion.

Animals↗

Chimeric homeobox gene E2A-PBX1 induces proliferation, apoptosis, and malignant lymphomas in transgenic mice.

Expression of the homeobox fusion gene E2A-PBX1 under control of the immunoglobulin heavy chain enhancer efficiently induced malignancies in transgenic mice. All animals died before 5 months of age with lymphomas that demonstrated phenotypes consistent with transitional intermediate thymocytes (CD4+/CD8+/CD3med). E2A-PBX1 also markedly altered lymphoid development in pretumorous animals, reducing the number of thymocytes and bone marrow B lineage progenitors to 20% of normal levels. In spite of the observed reductions in lymphoid cells, premalignant animals contained significantly increased numbers of cycling thymocytes, but a higher proportion was also undergoing apoptosis, suggesting that increased cell death resulted in the marked lymphopenias. These data indicate that the chimeric homeodomain protein E2A-PBX1 paradoxically induces both proliferation and apoptosis in lymphoid cells, suggesting an in vivo association between nuclear oncogene-induced cell cycle progression and programed cell death.

Animals↗

Predictability of the t(1;19)(q23;p13) from surface antigen phenotype: implications for screening cases of childhood acute lymphoblastic leukemia for molecular analysis: a Pediatric Oncology Group study.

The t(1;19)(q23;p13) translocation occurs in approximately 5% of B-precursor acute lymphoblastic leukemias (ALLs) occurring in children. Its presence has been associated with a poor prognosis, which may be overcome with more intensive therapy. Although leukemic cells from cases of t(1;19)-ALL frequently express cytoplasmic mu heavy chains, their complete antigenic profile remains undefined. Among 697 consecutive cases of B-precursor ALL with complete phenotypic studies using a panel of monoclonal antibodies, 22 cases were found to carry the t(1;19). Twenty of 22 cases had an identical, complex phenotype characterized by homogeneous expression of CD19, CD10, and CD9; complete absence of CD34; and at least partial absence of CD20. Overall, this phenotype was seen in only 8.0% (56 of 697) of childhood B-precursor ALL. One of the two remaining t(1;19)-carrying cases conformed to this phenotype, but was lacking data for CD9. The other case differed by virtue of expression of CD34 and was also hyperdiploid with 55 chromosomes. Molecular studies showed E2A-PBX1 abnormalities in all examined cases (12 of 12) with the t(1;19), including the case lacking CD9 data. In contrast, no E2A-PBX1 abnormalities were detected in the sole t(1;19)-ALL with CD34 expression. Seventeen cases with the characteristic phenotype and uninformative cytogenetics were also molecularly analyzed and 5 of 17 (including 4 of 8 with unsatisfactory cytogenetics and 1 of 9 with a normal karyotype) contained E2A gene rearrangements and E2A-PBX1 fusion mRNAs. Our results show that all cases of t(1;19)-ALL with concomitant E2A-PBX1 fusion invariably express a characteristic but uncommon profile of surface antigens. These observations suggest that selective molecular analysis of a small subset of patients (those with uninformative cytogenetics and the characteristic phenotype) can identify a significant number of additional cases of ALL with E2A-PBX1 fusion that might benefit from more intensive therapy.

Antigens, CD↗

HRX involvement in de novo and secondary leukemias with diverse chromosome 11q23 abnormalities.

Chromosome band 11q23 is a site of recurrent translocations and interstitial deletions in human leukemias. Recent studies have shown that the 11q23 gene HRX is fused to heterologous genes from chromosomes 4 or 19 after t(4;11)(q21;q23) and t(11;19)(q23;p13) translocations to create fusion genes encoding proteins with structural features of chimeric transcription factors. In this report, we show structural alterations of HRX by conventional Southern blot analyses in 26 of 27 de novo leukemias with cytogenetically diverse 11q23 abnormalities. The sole case that lacked HRX rearrangements was a t(11;17)-acute myeloid leukemia with French-American-British M3-like morphology. We also analyzed 10 secondary leukemias that arose after therapy with topoisomerase II inhibitors and found HRX rearrangements in 7 of 7 with 11q23 translocations, and in 2 of 2 with unsuccessful karyotypes. In total, we observed HRX rearrangements in 35 leukemias involving at least nine distinct donor loci (1q32, 4q21, 6q27, 7p15, 9p21-24, 15q15, 16p13, and two 19p13 sites). All breakpoints localized to an 8-kb region that encompassed exons 5-11 of HRX, suggesting that fusion proteins containing similar portions of HRX may be consistently created in leukemias with 11q23 abnormalities. We conclude that alteration of HRX is a recurrent pathogenetic event in leukemias with 11q23 aberrations involving many potential partners in a variety of settings including acute myeloid leukemia, acute lymphoblastic leukemia, chronic myelogenous leukemia in blast crisis, and topoisomerase II inhibitor-induced secondary leukemias of both the myeloid and lymphoid lineages.

Antineoplastic Agents↗

A serine/proline-rich protein is fused to HRX in t(4;11) acute leukemias.

Translocations involving chromosome band 11q23 in acute leukemias have recently been shown to involve the HRX gene that codes for a protein with significant similarity to Drosophila trithorax. HRX gene alterations are consistently observed in t(4;11) (q21;q23)-carrying leukemias and cell lines by Southern blot analyses and are accompanied by HRX transcripts of anomalous size on Northern blots. HRX-homologous cDNAs were isolated from a library prepared from t(4;11)-carrying acute leukemia cells. cDNAs representative of transcription products from the derivative 11 chromosome were shown to contain HRX sequences fused to sequences derived from chromosome band 4q21. Fragments of the latter were used to clone and analyze cDNAs for wild-type 4q21 transcripts that predicted a 140-Kd basic protein (named FEL) that is rich in prolines, serines, and charged amino acids. FEL contains guanosine triphosphate-binding and nuclear localization consensus sequences and uses one of two possible 5' exons encoding the first 12 or 5 amino acids. After t(4;11) translocations, 913 C-terminal amino acids of FEL are fused in frame to the N-terminal portion of HRX containing its minor groove DNA binding motifs. These features are similar to predicted t(11;19) fusion proteins, suggesting that HRX consistently contributes a novel DNA-binding motif to at least two different chimeric proteins in acute leukemias.

Amino Acid Sequence↗

Topographical dissociation of BCL-2 messenger RNA and protein expression in human lymphoid tissues.

Immunohistochemistry and in situ hybridization with a synthetic oligonucleotide probe were used to compare the topographical distribution of BCL-2 proto-oncogenic protein with that of its messenger RNA (mRNA) in normal lymphoid tissues, follicular lymphomas, and lymphoma-derived cell lines. In normal lymph nodes, BCL-2 protein was most abundant in the small lymphocytes of primary lymphoid follicles and the mantle zones of secondary follicles, virtually absent within germinal centers, and of variable abundance in many interfollicular cells. In contrast, the distribution of BCL-2 mRNA was roughly reciprocal to that of the protein with intense hybridization signal in germinal centers and almost none in mantle zones. Discordant BCL-2 RNA and protein levels were also observed in tonsillar epithelial cells and cortical thymocytes. Concordant and abundant expression of BCL-2 mRNA and protein was detected in biopsy tissues and cell lines from t(14;18)-carrying lymphomas. The contrasting distributions of BCL-2 protein and RNA in normal lymphoid tissues suggest that translational and posttranslational control mechanisms play a significant role in regulating BCL-2 protein levels in germinal center cells, epithelial cells, and cortical thymocytes. Concordant BCL-2 mRNA and protein levels in follicular lymphomas suggest that translational control mechanisms may be disrupted as part of the sequence of genetic changes that transforms normal lymphoid cells into neoplastic follicular lymphoma cells.

Base Sequence↗

A submicroscopic interstitial deletion of chromosome 14 frequently occurs adjacent to the t(14;18) translocation breakpoint in human follicular lymphoma.

The t(14;18) chromosomal translocation characteristic of follicular lymphoma (FL) juxtaposes the immunoglobulin heavy chain locus (IGH) and the BCL2 proto-oncogene. The translocation can be readily detected as a non-germline Notl fragment resolved by pulsed-field gel electrophoresis. A benefit of this approach is that it enables examination of the structure of a large region (+/- 300 kb) surrounding the chromosomal breakpoint. In 40/46 cases the observed translocated Notl fragment was smaller than the 680-690 kb expected from published restriction maps of the involved loci suggesting a deletion in the region of the breakpoint. Analysis of the der(14) allele by molecular hybridization demonstrated that in 35/46 cases the mu constant region (C mu) was deleted. Further molecular dissection of the IGH locus demonstrated that this resulted from an interstitial deletion of the der(14) chromosome within the region defined by the mu switch region (S mu) on the 5' side and the epsilon constant region (C epsilon) on the 3' end. Thus, the deletion resembled a class switch (CS) recombination event. Surprisingly, the CS deletion was as common in FL which was sIGM positive (24/33, 72.7%) as in cases where the productive allele had already undergone CS deletion (11/13, 84.6%) suggesting that the observed non-physiologic CS deletion resulted from a cis effect of the chromosomal translocation. Similar interstitial deletions of the non-productive IGH allele were not seen in B cell lymphocytic lymphomas which do not have the t(14;18) translocation. Mapping of the 3' extent of the deletion by an isotype PCR assay demonstrated frequent involvement (11/12 cases) of the gamma 1 constant region (C gamma 1). Analysis of cases in which the deletion was not evident by Southern blotting but detectable by PCR suggested that the CS deletion had occurred in a small subpopulation of FL cells subsequent to the t(14;18) translocation. The biological role of frequent interstitial deletions of the der(14) chromosome in t(14;18)-carrying lymphomas remains to be elucidated.

Alleles↗

Telomeric structure in cells with chromosome end associations.

End-to-end associations of metaphase chromosomes have been observed in a variety of human tumors, ageing cells, and several chromosome instability syndromes. Since telomeres of tumor cells and ageing tissues are often reduced in length, it has been suggested that chromosome end associations may be due to loss of telomeric repeats. We report the molecular structure of telomeres of two human tumor cell lines with frequent end-to-end associations of metaphase chromosomes. These telomeres were shown to be severely reduced compared with most other human cells with functional telomeres. However, we also describe two cell lines with severely shortened telomeres that are not detectably compromised in their function. We suggest that telomeric length is not the only determinant of the fusigenic behavior of human telomeres in tumor cells.

Base Sequence↗

Expression of bcl-2 in fetal tissues suggests a role in morphogenesis.

We have studied the distribution of the bcl-2 protein in fetal tissues, in an effort to uncover patterns of expression that may elucidate the potential role of bcl-2 during development. We find that bcl-2 is expressed in many hematolymphoid and non-hematolymphoid tissues, most abundantly in placental trophoblast. In tissues of endocrine and neural derivation and in stem-cell populations of colonic and some stratified epithelia, bcl-2 seems to be involved in tissue homeostasis. However, in developing proximal nephrons of the kidney and other sites characterized by inductive interactions between epithelium and mesenchyme, bcl-2 is apparently involved in morphogenesis, possibly by mediating the formation of condensations of cells that are "committed" to the formation of more differentiated structures. The distribution of bcl-2-protein expression in fetal tissues is consistent with its previously described role in promoting cell survival, presumably by preventing apoptosis in lymphoid and other tissues where cell death represents an active regulatory process. Expression of bcl-2 protein is more widespread in fetal than adult tissues. Our observations therefore represent supportive evidence for the importance of inducible cell survival as a regulatory process in normal homeostasis and morphogenesis in many fetal tissues and structures.

Electrophoresis, Polyacrylamide Gel↗

Chimaeric oncoproteins resulting from chromosomal translocations in acute lymphoblastic leukaemia.

A major mode of proto-oncogene activation by chromosomal translocations concerns the creation of fusion genes which encode chimaeric proteins. The largest class of oncogenes identified to date is the transcription factors, which are involved in control of cellular proliferation and differentiation via regulation of target gene transcription. Protein chimaeras that result from translocations in childhood ALL include two which involve the 19p13.3 gene E2A and a large heterogeneous group involving HRX located at chromosome band 11q23. Functional studies demonstrate that E2A fusion proteins function as chimaeric transcription factors, and structural features suggest that HRX fusion proteins may have analogous properties.

Animals↗

Involvement of a homolog of Drosophila trithorax by 11q23 chromosomal translocations in acute leukemias.

We have identified a human homolog of the Drosophila trithorax protein that is structurally altered by 11q23 translocations in acute leukemias. Human trithorax (HRX) is a predicted 431 kd protein containing two potential DNA-binding motifs consisting of zinc fingers conserved with the fly protein and nonconserved amino-terminal "AT hook" motifs related to the DNA-binding motifs in HMG proteins. 11q23 translocations disrupt the HRX gene between these two motifs, and in a t(11;19)-carrying cell line fusion transcripts are expressed from both derivative chromosomes. The more abundant derivative 11 transcript codes for a chimeric protein containing the AT hook motifs fused to a previously undescribed protein (ENL) from chromosome 19. These data suggest a novel role for a trithorax-homologous protein in multilineage human leukemias that may be mediated by DNA binding within the minor groove at AT-rich sites, implicated to play an important role in bacterial IHF-, yeast datin-, and mammalian HMG-mediated gene activation.

Acute Disease↗

Isolation of region-specific cosmids from chromosome 5 by hybridization with microdissection clones.

A method is described for the isolation of chromosome region specific cosmids. The 5q35 region of the long arm of human chromosome 5 was microdissected, digested with MboI, ligated to oligonucleotide adaptors, amplified by the polymerase chain reaction and cloned into a plasmid vector. Inserts which did not contain highly repetitive sequences were used to screen a chromosome 5 cosmid library by direct hybridization. There were 33 positive cosmid clones identified with 4 microclones. Individual cosmid clones were biotinylated and used as probes for fluorescence in situ hybridization to metaphase chromosomes. Of the 33 cosmids that were mapped, 29 localized to q35 and 4 to q34, demonstrating the specificity of the microdissection library and the cosmids.

Base Sequence↗