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Mariella Dono

Publications and source records attributed to Mariella Dono.

9 recordsLinked to original sources

miR-15 and miR-16 induce apoptosis by targeting BCL2.

Chronic lymphocytic leukemia (CLL) is the most common human leukemia and is characterized by predominantly nondividing malignant B cells overexpressing the antiapoptotic B cell lymphoma 2 (Bcl2) protein. miR-15a and miR-16-1 are deleted or down-regulated in the majority of CLLs. Here, we demonstrate that miR-15a and miR-16-1 expression is inversely correlated to Bcl2 expression in CLL and that both microRNAs negatively regulate Bcl2 at a posttranscriptional level. BCL2 repression by these microRNAs induces apoptopsis in a leukemic cell line model. Therefore, miR-15 and miR-16 are natural antisense Bcl2 interactors that could be used for therapy of Bcl2-overexpressing tumors.

Apoptosis↗

Immunoglobulin gene mutation patterns and heterogeneity of marginal zone lymphoma.

Marginal zone (MZ) or MZ-like B-cells "home" outside the follicles of peripheral lymphoid tissues. Prototypic examples of these B-cells are those that home the MZ of the spleen, although B-cells with similar phenotypic and functional features can be found in the subepithelial (SE) areas of tonsil, in the Peyer's patches, in the lymph nodes, and in the thymic medulla. MZ-like B-cells also develop in mucosa-associated lymphoid tissue (MALT) and other sites (salivary glands, thyroid) that acquire organized lymphoid tissue after chronic antigenic stimulation, such as Hp infection in gastric maltomas or autoimmune insult in Sjogren's syndrome. Beside the so-called extranodal B-cell MALT lymphoma, the splenic MZ lymphoma with or without circulating villous lymphocytes and monocytoid lymphoma also are thought to originate from MZ B-cells. Normal MZ-like B-cells can be isolated from different tissue sources (tonsil, spleen) by using combination Percoll gradients, magnetic fractionation, and fluorescence-activated cell sorting. Analyses of morphology, phenotype, and functions of these purified MZ B-cells demonstrated that in humans, MZ B-cells are rather heterogeneous, comprising virgin and memory B-cells and of cells specialized in different types of human responses. In this chapter, we review the main procedures used to isolate and test the phenotypic and functional features of the MZ B-cells from human tonsil and spleen in our laboratory and discuss their characteristics by comparing them with the MZ B-cell-derived lymphomas.

B-Lymphocytes↗

Three cases of ophthalmomyiasis externa by sheep botfly Oestrus ovis in Italy.

Human infection with the sheep nasal botfly Oestrus ovis is sporadic and is often the consequence of an accidental deposit of the larvae by an adult botfly in the eye. This infestation results in external ophthalmomyiasis that, although a very rare condition, is more common among people living close to farming communities. We report three cases of O. ovis infestation which occurred in Italy in a limited area of La Spezia province (Le Cinque Terre), Italy during summer 2004. None of the patients had contact with wild or farm animals.

Adult↗

MicroRNA profiling reveals distinct signatures in B cell chronic lymphocytic leukemias.

Little is known about the expression levels or function of micro-RNAs (miRNAs) in normal and neoplastic cells, although it is becoming clear that miRNAs play important roles in the regulation of gene expression during development [Ambros, V. (2003) Cell 113, 673-676; McManus, M. T. (2003) Semin. Cancer Biol. 13, 253-258]. We now report the genomewide expression profiling of miRNAs in human B cell chronic lymphocytic leukemia (CLL) by using a microarray containing hundreds of human precursor and mature miRNA oligonucleotide probes. This approach allowed us to identify significant differences in miRNome expression between CLL samples and normal CD5+ B cells; data were confirmed by Northern blot analyses and real-time RT-PCR. At least two distinct clusters of CLL samples can be identified that were associated with the presence or absence of Zap-70 expression, a predictor of early disease progression. Two miRNA signatures were associated with the presence or absence of mutations in the expressed Ig variableregion genes or with deletions at 13q14, respectively. These data suggest that miRNA expression patterns have relevance to the biological and clinical behavior of this leukemia.

B-Lymphocytes↗

An oligonucleotide microchip for genome-wide microRNA profiling in human and mouse tissues.

MicroRNAs (miRNAs) are a class of small noncoding RNA genes recently found to be abnormally expressed in several types of cancer. Here, we describe a recently developed methodology for miRNA gene expression profiling based on the development of a microchip containing oligonucleotides corresponding to 245 miRNAs from human and mouse genomes. We used these microarrays to obtain highly reproducible results that revealed tissue-specific miRNA expression signatures, data that were confirmed by assessment of expression by Northern blots, real-time RT-PCR, and literature search. The microchip oligolibrary can be expanded to include an increasing number of miRNAs discovered in various species and is useful for the analysis of normal and disease states.

Adult↗

The CD5+ B-cell.

In the last two decades, many efforts have been made to better understand the biology of B-lymphoproliferative disorders through the knowledge of physiology and function of the postulated normal counterpart. The follicular mantle B-cells express a typical CD23+ IgM+ IgD+ phenotype and surround the germinal center area in secondary lymphoid organs. CD5+ B-cells with FM phenotype can be isolated from different sources and all share similar morphologic, phenotypic and functional features (small cells, scanty nucleus/cytoplasm ratio, unmutated VH genes, response to polyclonal activators but not to T independent antigens, production of "natural" antibodies). While the CD5+ B-cells predominate in fetal life, their number decreases with age. However, the CD5+ B-cells have been demonstrated to increase again in elderly both in man and mouse. This finding may explain the incidence of B-CLL and of MCL that are believed to represent the malignant transformation of the normal CD5+ B-cells, among elderly and middle aged individuals, respectively.

Animals↗

Remarkably similar antigen receptors among a subset of patients with chronic lymphocytic leukemia.

Studies of B cell antigen receptors (BCRs) expressed by leukemic lymphocytes from patients with B cell chronic lymphocytic leukemia (B-CLL) suggest that B lymphocytes with some level of BCR structural restriction become transformed. While analyzing rearranged V(H)DJ(H) and V(L)J(L) genes of 25 non-IgM-producing B-CLL cases, we found five IgG(+) cases that display strikingly similar BCRs (use of the same H- and L-chain V gene segments with unique, shared heavy chain third complementarity-determining region [HCDR3] and light chain third complementarity-determining region [LCDR3] motifs). These H- and L-chain characteristics were not identified in other B-CLL cases or in normal B lymphocytes whose sequences are available in the public databases. Three-dimensional modeling studies suggest that these BCRs could bind the same antigenic epitope. The structural features of the B-CLL BCRs resemble those of mAb's reactive with carbohydrate determinants of bacterial capsules or viral coats and with certain autoantigens. These findings suggest that the B lymphocytes that gave rise to these IgG(+) B-CLL cells were selected for this unique BCR structure. This selection could have occurred because the precursors of the B-CLL cells were chosen for their antigen-binding capabilities by antigen(s) of restricted nature and structure, or because the precursors derived from a B cell subpopulation with limited BCR heterogeneity, or both.

B-Lymphocytes↗

Maintenance of B lymphocyte-related clones in the cerebrospinal fluid of multiple sclerosis patients.

A longitudinal study of Ig V gene segments utilized by B cells from the cerebrospinal fluid (CSF) of two patients with multiple sclerosis (MS) was carried out using RT-PCR methodologies. One patient with a relapsing-remitting (RR)-MS was investigated at onset and at relapse, 1 year later. A patient with secondary-progressive (SP)-MS was tested 9 and 13 years after disease onset. Sequence analyses of V(H)DJ(H) segments bearing V(H)3 and V(H)4 that were obtained from Cgamma cDNA genes demonstrated a substantial proportion of shared clones in the samples taken at different times; these clones were identical or closely related, i.e. had the same third complementary determining region (CDR) of the H chain variable region gene (HCDR3) with different mutations in the V(H) segment. Collectively, these data demonstrate that in MS patients there is a strong selective pressure, which could be exerted by antigen (or autoantigen) stimulation, for the maintenance and partial diversification of certain V(H)DJ(H) Cgamma sequences.

Amino Acid Sequence↗

The human marginal zone B cell.

This study describes the features of the marginal zone (MZ) B cells of human tonsils and spleens and compares them with those of the follicular mantle (FM) B cells from the same tissues. The two B cell subpopulations displayed marked differences in phenotype, in response capacity to T cell-independent antigens and polyclonal B cell activators, and in presentation of antigens to T cells. FM B cells expressed surface CD5, and hence should be considered as B1 cells by current nomenclature. Fractionation of MZ B cells according to the presence or absence of surface IgD revealed the presence of two subsets. These subsets were characterized by different properties, including the presence of Ig V(H) gene mutations and the response capacity to TI-2 antigens, this latter property being associated with IgD-positive cells. Comparison of the data with those reported for mice revealed that human MZ B cells had strong analogies with both the murine MZ and B1 cells. In contrast, human B1 cells (that is, CD5-positive FM cells) were considerably different, an observation that should prompt further studies. Indeed, B cells with characteristics analogous to those of murine B1 cells were detected in small but definite proportions in the peripheral blood and tonsils. If the current distinction into B1 and B2 cells has to be maintained also for humans, it is likely that only these CD5-positive cells rather than the FM B cells should be called B1 cells.

Animals↗