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A novel splice acceptor site mutation which produces multiple splicing abnormalities resulting in protein S deficiency type I.

In an attempt to explore the molecular mechanisms for protein S deficiency, a patient with such a deficiency was examined at the DNA, RNA and protein levels. Nucleotide analyses revealed that the proband, the mother and the grandmother had a G-->C substitution in the invariant AG dinucleotide at the splicing acceptor site of intron A/exon 2. This patient was heterozygous for this substitution and the mutant allele was inherited from the proband's mother and grandmother. Reverse transcription-polymerase chain reaction analysis demonstrated several kinds of splicing abnormalities such as exon skipping and cryptic splicing, in addition to correct splicing. Semiquantitation of mRNA for the protein S gene revealed that the amount of the proband's mRNA was reduced to 60% of normal. Thus, this mutation impaired the normal processing of mRNA for the protein S gene, resulting in the subject's severe protein S deficiency.

Adolescent↗

Progression of visual evoked potential abnormalities in multiple sclerosis and optic neuritis.

To investigate visual signal processing in patients with optic neuritis, suspected multiple sclerosis, confirmed multiple sclerosis (MS), and optic neuritis combined with MS, pattern reversal visual evoked potentials (VEPs) were recorded in patients and normal subjects. The amplitude and latency of the first positive peak, P100 were determined to assess electrical conduction in patients as compared to normal subjects. Suspected MS patients did not differ from normal subjects in peak latencies or amplitudes. The P100 amplitude was reduced in optic neuritis, confirmed MS and optic neuritis combined with confirmed MS. The P100 and N145 latencies were prolonged in optic neuritis patients and confirmed MS patients as compared to normal subjects. The main characteristic of optic neuritis was P100 amplitude reduction, and of confirmed MS was P100 latency delay. There was a progression of the P100 latency delay and of the P100 amplitude decrement in optic neuritis, confirmed MS, and optic neuritis combined with confirmed MS. These results indicate a progression of demyelination in optic neuritis, confirmed MS, and optic neuritis combined with confirmed MS.

Adolescent↗

Detection of 13q abnormalities in multiple myeloma using immunomagnetically selected plasma cells.

Accurate prognostic evaluation of patients with multiple myeloma (MM) is required for their stratification for more adequate therapy. Chromosomal G-banding and interphase fluorescence in situ hybridization (FISH) on cell-nonspecific samples and on myeloma cells selected by magnetic-activated cell separation (MACS) were used to study 13 samples from 12 multiple myeloma (MM) patients. Bone marrow (BM) samples were analysed using three approaches. Standard mitotic samples were prepared and analysed after G-banding. Interphase FISH was performed to detect the 13q14 deletion in unselected BM cells. In parallel, myeloma cells were selected from the BM using the CD138-specific antibody. The high-purity myeloma cell suspension was then analysed by interphase FISH for the 13q14 deletion. Magnetic separation yielded enriched myeloma cell suspensions with the mean viability of 98.0% (range: 97.0%-99.0%), and the purity of 97.6% (range: 87.2%-99.2%) as detected morphologically, and 85.2% (range: 44.8%-98.4%) as detected by immunophenotyping for CD138+ cells. Interphase FISH revealed the 13q14.3 deletion in 5 of 13 (38.5%) of cell-nonspecific samples and in 9 of 13 (69.2%) of enriched myeloma cell suspensions. In conclusion, interphase FISH on immunomagnetically selected MM cells increases the detection of the 13q14 deletion in BM samples from the patients with MM.

Cells, Cultured↗

Multiple Chromosome Abnormalities Following Bone Marrow Transplant for Chronic Myelogenous Leukemia.

A 44-year-old female was diagnosed in the chronic phase of chronic myelogenous leukemia (CML) and was confirmed to be Philadelphia chromosome positive by a bone marrow cytogenetic study. No additional cytogenetic abnormalities were found. The patient's cell counts were initially well controlled with hydrox-yurea. She then received an unrelated 6 of 6 HLA matched allo-geneic bone marrow transplant (BMT) from a male donor. The patient underwent myeloablative therapy with thiotepa and five fractions of total body radiation prior to the transplant. About four weeks after transplantation, the patient developed biopsy-proven graft-versus-host disease of the skin and GI tract. A blood sample was drawn at that time for cytogenetic analysis. Among 34 analyzed cells, 22 were normal male donor cells. The remaining 12 cells did not have the t(9;22), but had numerous structural abnormalities. While many cells were missing an X chromosome, other abnormalities, including deletions, rearrangements, dicentrics, acentric fragments, rings and marker chromosomes were non-clonal. No clinical evidence of progression from CML chronic phase was found, suggesting that the non-clonal abnor-malities were therapy related.

Journal Article↗

T-cell large granular lymphocyte leukemias have multiple phenotypic abnormalities involving pan-T-cell antigens and receptors for MHC molecules.

T-cell large granular lymphocyte (T-LGL) leukemias represent monoclonal T-cell expansions that express CD16, CD56, or CD57 and cause cytopenias. The identification of T-LGL leukemias can be difficult because reactive T-LGL cells also can express CD16, CD56, and CD57, and many leukemia cases show only mild lymphocytoses. In this study, 23 T-LGL leukemia cases were analyzed by 3- and 4-color flow cytometry to identify markers that could aid in discriminating leukemic from normal T-LGL. In most cases (18/23), abnormalities (bright, dim, or negative expression) of 2 or more pan-T-cell antigens were identified, with all cases showing abnormal CD5 levels. Abnormal expression of CD94 was identified in 22 of 23 cases, and 15 of 21 cases also showed abnormal expression of class 1 MHC receptor molecules identified by antibodies against CD158a, CD158b, CD158e, CD158i, CD158k, and CD94. These studies help define abnormal phenotypic features typical of T-LGL leukemia that may have important diagnostic value.

Adult↗