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Yoshiharu Tokimitsu

Publications and source records attributed to Yoshiharu Tokimitsu.

3 recordsLinked to original sources

Single-cell microarray for analyzing cellular response.

Detection of cellular response by measuring intracellular calcium, (Ca2+)i with Ca2+-dependent fluorescent dye are standard approaches to detect ligand-stimulated cells and to study signaling through ligand/receptor interaction. We describe a single-cell microarray system to analyze cellular response of individual cells such as lymphocytes using microchamber array chips. The single-cell microarray chip is made from polystyrene with over 30,000 microchambers, which can accommodate only single cells. Lymphocytes derived from mouse spleen or human blood were spread on the microarray, and over 80% of the microchambers achieved single-cell status. Stimulation of B-cells through antigen receptors on the microarray allowed us to detect activated B-cells by comparing the states of single B-cells before and after stimulation with antigen, which is disabled for flow cytometry. In addition, this novel method demonstrated retrieval of positive single B-cells from microchambers by a micromanipulator and achieved antibody DNA analysis. The system is suitable for high-throughput analysis of intracellular Ca2+ response at the single-cell level and is applicable to screen antigen-specific lymphocytes for making specific monoclonal antibody.

Amino Acid Sequence↗

Functional analysis of transactivation by mutants of hepatitis B virus X gene in human hepatocellular carcinoma.

The X protein of the hepatitis B virus transactivates various cellular and viral promoters and enhancers. In this study, wild-type and mutants of the X gene, including the point mutations at codons 130 (AAG-->ATG, lysin-->methionine) and 131 (GTC-->ATC, valine-->isoleucine), commonly found in patients with human hepatocellular carcinoma (HCC), or deletions encompassing the same region, were cloned and inserted into expression vectors. Functional analysis of the mutants of the X gene was performed on the long terminal repeat of the Rous sarcoma virus in a transient transfection assay. A transactivating function was observed in the vector containing point mutations at codons 130 and 131 at the same level as that of wild-type X gene. Two constructs, each containing a different type of 8-nucleotide deletion mutant (codons 128-130 or 130-132,) dramatically lost their transactivating function. These findings suggest that the transactivating function is not necessarily associated with the development of HCC, and that not only transactivation by the X gene but also the mutation-enhanced oncogenic potential of the gene products could contribute to hepatocarcinogenesis.

Animals↗

Possible involvement of glial cell line-derived neurotrophic factor and its receptor, GFRalpha1, in survival and maturation of thymocytes.

The glial cell line-derived neurotrophic factor (GDNF) and its receptors (GFR) play important roles in the promotion of survival and differentiation of central and peripheral neuronal populations. We show that GFRalpha1, a component of GDNF receptor, was expressed in thymocytes at an early stage of thymocyte-development and was involved in the survival of thymocyte precursors. GFRalpha1and GDNF were expressed in thymus, but not in spleen or lymph nodes in adult mice. During embryonic thymocyte development, GFRalpha1 was predominantly expressed on thymocytes from days 14.5 to 16.5 of gestation, and thereafter its expression gradually declined. In adult thymus, GFRalpha1 was expressed only on CD4(-)CD8(-) double-negative (DN) thymocytes, but not on CD4(+)CD8(+) double-positive or single-positive thymocytes. It was strongly expressed on RAG2(-/-) thymocytes arrested at the DN stage, and ist expression was reduced during their differentiation after in vivo anti-CD3 antibody stimulation. Additionally, fetal thymocyte precursors grew in serum-free medium of the fetal thymus organ culture system in the presence of recombinant GDNF (rGDNF), while the cells without rGDNF died. These results suggested that GDNF/GFRalpha1 are involved in the survival of both the nervous system and DN immature thymocytes.

Animals↗