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Eiichi Tamiya

Publications and source records attributed to Eiichi Tamiya.

38 records · Page 3Linked to original sources

Characterization of a new keratin-degrading bacterium isolated from deer fur.

A keratin-degrading bacterium was isolated from soil containing deer fur. An axenic culture of the keratin-degrading bacterium was obtained in liquid culture using a keratin enrichment technique. The isolated bacterium was gram negative and catalase- and oxidase-positive. Transmission electron microscopic observations showed that the bacterium was rod-shaped, 1.0-1.3 microm long and 0.7 microm in diameter. Phylogenetic analysis of 16S rDNA revealed that the new isolate has only 90.6% homology with Stenotrophomonas nitritireducens. Hence, this new bacterium was designated as Stenotrophomonas sp. D-1. The optimum temperature was determined to be 20 degrees C for maximum growth and keratinolytic enzyme production. Amino acid data, obtained after treating keratin powder with the supernatant culture, suggest that the major free amino acids resulting from keratin degradation are phenylalanine, tyrosine and valine. In addition, native chicken feather was degraded completely at 20 degrees C in 2.5 d by this bacterium.

Journal Article↗

Selection and properties for the recognition of P19 embryonic carcinoma stem cells.

The P19 cell is a pluripotent stem cell of murine teratocarcinoma. When treated with retinoic acid, P19 cells can be differentiated along a neural cell lineage in culture. To isolate peptides that bind to the stem cell, we employed a phage display technology with undifferentiated P19 cells as the target. To reduce nonspecific binding of phages to the cell surface, the phage libraries were preadsorbed to the differentiated P19 cells before each selection on the undifferentiated P19 cells. After eight rounds of the selection, No. 28 phage displaying ALPSTSSQMPQL-peptide was isolated. Immunofluorescence analysis revealed that No. 28 phage selectively binds to the undifferentiated P19 cells but not to the differentiated P19 cells or SHSY cell line. The chemically synthesized peptide ALPSTSSQMPQL presented on the No. 28 phage efficiently inhibited the binding of No. 28 phage to the undifferentiated P19 cells. This result confirmed that No. 28 phage binding to the cell was mediated by the displayed peptide. The identified peptide may be targeted to a marker expressed on the stem cell and thus become a practical tool for the isolation of somatic stem cells.

Animals↗