PubMed Health⌕ Search

Biomedical subjects

Mina Okamoto

Publications and source records attributed to Mina Okamoto.

4 recordsLinked to original sources

A novel type of EWS-CHOP fusion gene in myxoid liposarcoma.

The cytogenetic hallmark of myxoid type and round cell type liposarcoma consists of reciprocal translocation of t(12;16)(q13;p11) and t(12;22)(q13;q12), which results in fusion of TLS/FUS and CHOP, and EWS and CHOP, respectively. Nine structural variations of the TLS/FUS-CHOP chimeric transcript have been reported, however, only two types of EWS-CHOP have been described. We describe here a case of myxoid liposarcoma containing a novel EWS-CHOP chimeric transcript and identified the breakpoint occurring in intron 13 of EWS. Reverse transcription-polymerase chain reaction and direct sequence showed that exon 13 of EWS was in-frame fused to exon 2 of CHOP. Genomic analysis revealed that the breaks were located in intron 13 of EWS and intron 1 of CHOP.

Adult↗

Bone morphogenetic proteins in bone stimulate osteoclasts and osteoblasts during bone development.

UNLABELLED: In this study, overexpression of noggin, a BMP antagonist, in developing bone caused significantly decreased osteoclast number as well as bone formation rate, resulting in increased bone mass with immature bone quality. BMP signaling plays important roles in normal bone development and regulation of bone resorption. INTRODUCTION: Bone morphogenetic proteins (BMPs) act on various types of cells. Although involvement of BMP signals in osteoblast differentiation has been studied extensively, the effects of BMPs on osteoclasts have not been widely researched. Consequently, the net effects of BMPs on bone remain unclear. The purpose of this study was to delineate more fully the role of BMPs in skeletal biology. MATERIALS AND METHODS: We generated transgenic mice that express BMP4 or noggin in bone under the control of the 2.3-kb alpha1(I) collagen chain gene (Col1a1) promoter, and analyzed their bone phenotype. We also analyzed bone of transgenic mice expressing BMP4 specifically in cartilage. RESULTS: Mice overexpressing BMP4 in bone developed severe osteopenia with increased osteoclast number. Mice overexpressing noggin, a BMP antagonist, in bone showed increased bone volume associated with decreased bone formation rate and decreased osteoclast number. The noggin-transgenic tibias exhibited reduced periosteal bone formation and reduced resorption of immature bone in marrow spaces, associated with frequent fractures at the diaphysis. Co-culture of primary osteoblasts prepared from noggin-transgenic calvariae and wildtype spleen cells resulted in poor osteoclast formation, which was rescued by addition of recombinant BMP2, suggesting that noggin inhibits osteoclast formation by attenuating BMP activities in noggin-transgenic mice. The expression levels of Rankl were not decreased in primary osteoblasts from noggin transgenic mice. Immunoblot analysis showed increased phosphorylation of Smad1/5/8 in osteoclast precursor cells after 20-minute treatment with BMPs, suggesting that these cells are stimulated by BMPs. Mice overexpressing BMP4 in cartilage had enlarged bones containing thick trabeculae, possibly because of expansion of cartilage anlagen. CONCLUSIONS: Overexpression of noggin in bone revealed that BMP signals regulate bone development through stimulation of osteoblasts and osteoclasts.

Animals↗

Smad6/Smurf1 overexpression in cartilage delays chondrocyte hypertrophy and causes dwarfism with osteopenia.

Biochemical experiments have shown that Smad6 and Smad ubiquitin regulatory factor 1 (Smurf1) block the signal transduction of bone morphogenetic proteins (BMPs). However, their in vivo functions are largely unknown. Here, we generated transgenic mice overexpressing Smad6 in chondrocytes. Smad6 transgenic mice showed postnatal dwarfism with osteopenia and inhibition of Smad1/5/8 phosphorylation in chondrocytes. Endochondral ossification during development in these mice was associated with almost normal chondrocyte proliferation, significantly delayed chondrocyte hypertrophy, and thin trabecular bone. The reduced population of hypertrophic chondrocytes after birth seemed to be related to impaired bone growth and formation. Organ culture of cartilage rudiments showed that chondrocyte hypertrophy induced by BMP2 was inhibited in cartilage prepared from Smad6 transgenic mice. We then generated transgenic mice overexpressing Smurf1 in chondrocytes. Abnormalities were undetectable in Smurf1 transgenic mice. Mating Smad6 and Smurf1 transgenic mice produced double-transgenic pups with more delayed endochondral ossification than Smad6 transgenic mice. These results provided evidence that Smurf1 supports Smad6 function in vivo.

Animals↗

Immature tumor angiogenesis in high-grade and high-stage renal cell carcinoma.

OBJECTIVES: To investigate the correlation between pathologic findings and maturation of the tumor neovasculature of renal cell carcinoma by immunohistochemical studies. METHODS: Formalin-fixed and paraffin-embedded specimens from 25 randomly selected patients with renal cell carcinoma were stained with mouse monoclonal antibodies, anti-human CD31, anti-alpha smooth muscle actin (alphaSMA), and anti-human calponin by the indirect immunoperoxidase method. The microvessels were counted in six areas with the higher number of microvessels in each patient at 200x magnification (0.255 mm2 per area). RESULTS: The number of CD31-positive microvessels in grade 3 tumors was significantly lower than those in grade 1 or 2 tumors (P = 0.003222 and P = 0.043217, respectively). The CD31-positive microvessel counts of those of higher stage, tumor size greater than 4.5 cm, or non-clear cell type were significantly lower than tumors of lower stage, size less than 4.6 cm, or clear cell type. In the grade 3 tumors, the expression ratio of the number of alphaSMA-positive microvessels to the number of CD31-positive microvessels was significantly decreased compared with grade 1 or 2 tumors (P = 0.000011 and P = 0.000000, respectively). The expression of calponin in the tumor neovasculature was not observed. The expression ratios of the number of alphaSMA-positive microvessels to the number of CD31-positive microvessels in higher stages, larger tumor sizes, or non-clear cell types were significantly decreased. CONCLUSIONS: The tumor neovasculature of high-grade and high-stage tumors was immature. These results imply that high-grade tumors of renal cell carcinomas may be susceptible to antiangiogenesis therapy inducing apoptosis of immature tumor vessels.

Actins↗