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Y Inaguma

Publications and source records attributed to Y Inaguma.

15 recordsLinked to original sources

Copurification of small heat shock protein with alpha B crystallin from human skeletal muscle.

Immunoreactive alpha B crystallin and a 28-kDa protein in an extract of human pectoral muscle were precipitated by (NH4)2SO4 at 40% saturation, and coeluted during column chromatography on DEAE-Sepharose and on Bio-Gel A-5m. The two proteins were separated on a column of S-Sepharose HP in the presence of 7 M urea. Further chromatography of each of the two resultant fractions on a column of Superdex 75 pg and on a TSK-SP 5PW column in the presence of urea yielded preparations of alpha B crystallin and the 28-kDa protein each of which gave a single band on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The final preparation of 28-kDa protein contained at least two subtypes, which were separable on the TSK-SP column. However, fragmentation patterns of the two major 28-kDa proteins after digestion with endoproteinase Asp-N were identical. Amino acid sequences of peptides formed by cleavage of the purified 28-kDa protein and alpha B crystallin were identical to those of particular regions of the deduced amino acid sequences of human small heat shock protein (HSP28) and lens alpha B crystallin, respectively. Using an immunoassay method, with antibodies raised in rabbits, we found that HSP28 was present in all human tissues tested and at high levels (greater than 1 micrograms/mg protein) in the heart and other tissues composed of striated and smooth muscles. HSP28, found with alpha B crystallin, in extracts of several human and bovine tissues was trapped on and coeluted with alpha B crystallin from an affinity column prepared with antibodies against alpha B crystallin. This result suggests that the two proteins are associated in cells.

Amino Acid Sequence

Translocation and induction of alpha B crystallin by heat shock in rat glioma (GA-1) cells.

Response to heat shock of alpha B crystallin expressed in rat astrocytoma GA-1 cells was analysed quantitatively using an immunoassay method. GA-1 cells contained a considerable amount of alpha B crystallin at growing phase. When the growing cells were heated at 45 degrees C, concentrations of alpha B crystallin in cell extracts were decreased to less than one-fifth of the original level within 15 min, with an increase in the insoluble fraction which was detected by immunoblotting. The low level of alpha B crystallin in the cytoplasm, that was observed for a few hours after heat shock, gradually recovered to the control level within several hours. At 10 h following heat shock (45 degrees C for 15 min), the concentration of alpha B crystallin in the soluble extract was about twice that of the control level, with little detectable amounts in the insoluble fraction. These results are additional evidence that suggest that alpha B crystallin is a small heat shock protein.

Animals

Immunoreactive parvalbumin concentrations in parahippocampal gyrus decrease in patients with Alzheimer's disease.

By using a sensitive enzyme immunoassay system for rat parvalbumin, we determined parvalbumin contents in the 4 cerebrocortical regions (superior frontal gyrus of frontal lobe, parahippocampal gyrus of temporal lobe, superior parietal lobule of parietal lobe, and calcarine area of occipital lobe) of patients with Alzheimer's disease and age-matched controls. Among the 4 regions, concentrations of parvalbumin were the highest in calcarine area (68.6 +/- 6.7 ng/mg protein, rat parvalbumin equivalents, mean +/- SE) and the lowest in the parahippocampal gyrus (11.0 +/- 1.7 ng/mg protein) in the controls. A similar regional difference of the concentration was observed also in the patients with Alzheimer's disease. When compared with the controls, however, concentrations of parvalbumin in parahippocampal gyrus of patients with Alzheimer's disease (4.0 +/- 0.9 ng/mg protein) were significantly low (P less than 0.01), showing less than a half of the control values. In contrast, the concentrations in the 3 other regions showed little difference between Alzheimer's disease and the controls.

Alzheimer Disease

Scheme for the generation of a truncated endogenous murine leukaemia virus, the Fv-4 resistance gene.

The Fv-4 resistance (Fv-4r) gene is a truncated endogenous murine leukaemia virus (MuLV) containing a 3' portion of pol, the entire env gene and the 3' long terminal repeat. Env expression renders mice resistant to infection by ecotropic MuLVs, probably via receptor interference. Previous studies have suggested that the flanking cellular sequences are also important for Fv-4 env gene expression. To establish how the truncated retrovirus was generated and the nature of the cellular sequences involved, the Fv-4 susceptible (Fv-4s) allele DNA was cloned, and its restriction map and nucleotide sequence were compared with those of the Fv-4r allele. A likely mechanism for generation of the truncated endogenous MuLV is suggested by the results; integration of a prototype MuLV provirus at a site within the Fv-4s allele about 6 to 8 kb downstream of a non-retroviral promoter region, followed by deletion of the 5' half of the provirus, with an accompanying loss of only 7 or 10 bp of cellular flanking sequences. The deletion may have led to the expression of the Fv-4r env gene under control of the non-retroviral promoter.

3T3 Cells

Developmental and age-dependent changes of 28-kDa calbindin-D in the central nervous tissue determined with a sensitive immunoassay method.

For the quantitative analysis of vitamin D-dependent 28-kDa calcium-binding protein (calbindin-D) in the CNS, we have established a highly sensitive immunoassay method. The antisera were raised in rabbits with purified calbindin-D from rat kidneys, and the antibodies were purified with a calbindin-D-coupled Sepharose column. The purified antibodies were specific for calbindin-D, showing a single band on the immunoblot with the extract of rat kidney or cerebellum. The sandwich-type immunoassay system was prepared by the use of purified monospecific antibodies, and the minimum detection limit of the assay was 0.1 pg or 3.6 amol of calbindin-D, which was sufficiently sensitive for the measurement of calbindin-D content in isolated Purkinje cell bodies at the level of single cells. The average content of calbindin-D in a single Purkinje cell was 0.05 pg. Calbindin-D was detected in most of the rat tissues examined, but it was present predominantly in the kidney and CNS, especially in the cerebellum. Calbindin-D was detected at a similarly low level in the cerebral cortex, cerebellum, and brainstem of rat embryos of 15 gestational days, and it increased gradually but differently in these regions, reaching the respective adult levels by 4-5 weeks of postnatal age. In contrast, kidney calbindin-D increased sharply between 15 gestational days and 3 postnatal days, reaching the adult level by 6 days of age. Calbindin-D levels in the adult rat CNS were affected little by age, whereas the concentrations in human cerebral cortices were significantly low in the aged brain as compared with those in the young brain.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Immunoreactive alpha A crystallin in rat non-lenticular tissues detected with a sensitive immunoassay method.

For the quantitative analysis of the A subunit of alpha crystallin (alpha A) in the lens and for the survey of possible existence of alpha A in the non-lenticular tissues, we have established a highly sensitive and specific immunoassay method for alpha A. Antisera to alpha A were raised in rabbits with alpha A purified from bovine lens, or the C-terminal decapeptide (EEKPSSAPSS) of alpha A (alpha Apep). The antibodies to alpha A and alpha Apep were purified by the use of an alpha A-coupled Sepharose 4B column. The F(ab')2 fragments of purified anti-alpha A IgG were immobilized on polystyrene balls and the Fab' fragments of purified anti-alpha Apep IgG were labeled with beta-D-galactosidase from Escherichia coli. The minimum detection limit of the sandwich-type immunoassay using the two antibody preparations was less than 10 pg alpha A without any cross-reactivity with alpha B. By employing the present methods, it was found that a significant amount of immunoreactive alpha A was present in rat spleen and thymus. Very low levels of immunoreactive alpha A were detected in the rectum, caecum, liver, kidney, adrenal, cerebellum and brainstem. The immunoreactive alpha A in the spleen extract was purified partially (about 50% purity) by the use of anti-alpha Apep-coupled Sepharose. The concentration of alpha A in the spleen was less than 1 ng/mg protein before 3 weeks of age. After 5 weeks of age, however, it increased lineally reaching about 20 ng/mg protein by 18 weeks of age. Immunohistochemically, the alpha A was localized in the reticular cells in the spleen and thymus.

Animals

Sensitive immunoassay for rat parvalbumin: tissue distribution and developmental changes.

A sensitive enzyme immunoassay for measurements of rat parvalbumin was established using antibodies raised in rabbits with parvalbumin purified from skeletal muscles. Antibodies in the antiserum were purified with a parvalbumin-coupled Sepharose column. The sandwich-type immunoassay system for parvalbumin was composed of polystyrene balls with immobilized purified antibodies and the same antibodies labeled with beta-D-galactosidase from Escherichia coli. The assay was highly sensitive and the minimum detection limit was 1 pg parvalbumin/tube. The assay did not cross-react with other calcium binding proteins, including human S-100a0 and S-100b proteins, rat 28-kDa calbindin-D, and bovine calmodulin. High concentrations of parvalbumin were observed in the skeletal muscles, especially in those composed of fast-twitch fibers, and in the diaphragm and tongue, but not in heart muscle. A relatively high concentration was estimated in the central nervous tissue. Parvalbumin was detected in the cerebral cortex and cerebellum of gestational 15-day fetuses. However, the levels of parvalbumin in the muscle tissues and central nervous tissue were very low in rats before 1 week of age. Thereafter, they increased sharply, reaching the adult levels by 5 weeks in most of the tissues. Parvalbumin concentrations in adult rat soleus muscle increased less than 20-fold within 10 days after transection of the ipsilateral sciatic nerve, while the concentrations in the extensor digitorum longus muscle did not change in the same period.

Animals

Tissue distribution and developmental profiles of immunoreactive alpha B crystallin in the rat determined with a sensitive immunoassay system.

In order to determine the quantitative distribution of alpha B crystallin (alpha B) in non-lenticular tissues, we have established a sensitive immunoassay system for specific measurement of alpha B. Antisera were raised in rabbits by injecting alpha B purified from bovine lenses, or C-terminal decapeptide (KPAVTAAPKK) of alpha B (alpha Bpep). The antibodies to alpha B and alpha Bpep were purified by the use of alpha B-coupled Sepharose column. The F(ab')2 fragments of antibody IgG to alpha B were immobilized on polystyrene balls and the Fab' fragments of antibody IgG to alpha Bpep were labeled with beta-D-galactosidase from Escherichia coli. The sandwich-type enzyme immunoassay consisted of the above two antibodies was sensitive, and the minimum detection limit of the assay was 10 pg alpha B without any crossreactivity with alpha A. By using the assay method, it is revealed that the alpha B was distributed in most of the tissues examined. Among the non-lenticular tissues, alpha B was present at high levels in the heart and striated muscles, especially in the soleus muscle, and kidney. High levels of alpha B in the muscle tissues were also seen in various animals. Developmental increases of alpha B in rat muscle tissues and kidney were observed from 16 days of gestational age to 1 or 5 weeks of postnatal age. In contrast, the alpha B in the brain kept a low level during the same period. After 5 weeks of age, alpha B concentrations in the brain increased sharply, reaching the adult levels at 9 weeks of age. Immunohistochemical staining with anti-alpha Bpep revealed that alpha B was positive not only in glial cells, in the central nervous tissues, but also in some neurons of spinal cord, brainstem, hippocampus, and olfactory bulb. Spermatocytes in the testis were also immunopositive for alpha B.

Amino Acid Sequence

Acquisition of two endogenous ecotropic murine leukemia viruses in distinct Asian wild mouse populations.

Wild mouse DNAs were analyzed for two types of endogenous ecotropic murine leukemia viruses (MuLVs), Akv and Fv-4r-associated MuLV. Endogenous Akv viruses were found only in northern Chinese mice, Korean mice, and Japanese (Mus musculus molossinus) mice. The Fv-4r gene, which is a truncated endogenous MuLV with ecotropic interference properties, was carried by Southeast Asian (M. m. castaneus) mice, Korean mice, and M. m. molossinus. Sequences related to Fv-4r MuLV env were found only in M. m. castaneus. These findings suggest that endogenous Akv viruses were acquired by northern Chinese mice and that the Fv-4r gene or its related endogenous MuLVs were acquired independently by M. m. castaneus. The Fv-4r gene appears to have been generated hundreds of thousands of years ago, before the amplification of the Fv-4r-related endogenous MuLVs in M. m. castaneus. The coexistence of Akv viruses and the Fv-4r gene in M. m. molossinus may be explained by the hybrid origin of M. m. molossinus in crosses between northern Chinese mice and M. m. castaneus, as described in other articles. The absence of the Fv-4r-related endogenous MuLVs in M. m. molossinus may indicate that the ancestral mice of this subspecies either were an ancient type of M. m. castaneus that had acquired the Fv-4r gene but had not yet acquired the Fv-4r-related endogenous MuLVs or were a rare fraction of a mixed population of M. m. castaneus and northern Chinese mice.

Animals

Epithelial induction of stromal tenascin in the mouse mammary gland: from embryogenesis to carcinogenesis.

The distribution of the extracellular matrix glycoprotein tenascin was studied by immunofluorescence in the developmental history of the mouse mammary gland from embryogenesis to carcinogenesis. Tenascin appeared only in the mesenchyme immediately surrounding the epithelia just starting morphogenesis, that is, in embryonic mammary glands from 13th to 16th day of gestation, in mammary endbuds which are a characteristic structure starting development during maturation of the mammary gland, and in the stroma of malignant mammary tumors. However, tenascin was absent in the elongating ducts of embryonic, adult, proliferating, and involuting mammary glands and preneoplastic hyperplastic alveolar nodules. The transplantation of embryonic submandibular mesenchyme into adult mammary glands induces the development of duct-alveolus nodules, which morphologically resemble developing endbuds. Tenascin reappeared around those nodules during the initial stages of their development. Tenascin expression could be induced experimentally in several ways. First, tenascin was detected at the site where the first mammary tumor cells GMT-L metastasized. Second, tenascin was detected in the connective tissue in the tumors derived from the injected C3H mammary tumor cell line CMT315 into Balb/c nude mouse. Cross-strain marker anti-CSA antiserum clearly showed that the tenascin-positive fibroblasts were of Balb/c origin. Third, when embryonic mammary epithelium was explanted on to embryonic mammary fat pad cultures, the mesenchymal cells condensed immediately surrounding the epithelium. Tenascin was detected in these condensed cells. From these three observations we conclude that both embryonic and neoplastic epithelium induced tenascin synthesis in their surrounding mesenchyme.

Animals

Developmentally regulated expression of a human "finger"-containing gene encoded by the 5' half of the ret transforming gene.

We isolated and sequenced a cDNA clone of the human gene encoded by the 5' half of the ret transforming gene. The nucleotide sequence indicates that it encodes a protein with "finger" structures which represent putative metal- and nucleic acid-binding domains. Transcription of this gene was detected at high levels in a variety of human and rodent tumor cell lines, mouse testis, and embryos. In addition, a unique transcript was observed in testis RNA. When the expression of the unique transcript was examined at different stages of spermatogenesis, a striking increase in mRNA levels accompanied progression from meiotic prophase pachytene spermatocytes to postmeiotic round spermatids. This finger-containing gene may thus function in male germ cell development.

Amino Acid Sequence

Cloning and expression of the ret proto-oncogene encoding a tyrosine kinase with two potential transmembrane domains.

The nucleotide sequence of the ret proto-oncogene has been determined from cDNA clones isolated from a cDNA library of a THP-1 human monocytic leukemia cell line. Analysis of this sequence indicates that it encodes a protein which is structurally related to transmembrane receptors with a cytoplasmic tyrosine kinase domain. Unlike most growth factor receptors, it contains two hydrophobic regions which are potential transmembrane domains. Comparison of the sequence of the ret proto-oncogene with that of the ret transforming gene revealed that, in addition to the amino-terminal truncation, the last 51 carboxy-terminal amino acids of the ret proto-oncogene were replaced with 9 unrelated amino acids of the ret transforming gene. The focus forming activity of the ret cDNA, containing both amino-terminal and caboxy-terminal truncations, was approximately 13-fold higher than that of cDNA containing only the amino-terminal truncation. This suggests a possible role for the carboxy-terminal sequence in activation of transforming potential of the ret proto-oncogene. When transcription of the ret proto-oncogene was examined in a variety of mouse tissues, we detected its transcription in normal mouse spinal cord and lymphadenopathy of C3H/HeJ-gld/gld and MRL/Mp-lpr/lpr mice.

Amino Acid Sequence

Tenascin is a stromal marker for epithelial malignancy in the mammary gland.

Tenascin is an extracellular matrix glycoprotein that is not present in the normal mature rat mammary gland. The distribution of tenascin was examined by immunohistochemistry in mammary tumors from carcinogen-treated and untreated rats, in virus-induced mammary tumors from mice, and in a variety of mammary gland lesions from humans. Tenascin was detectable in the stroma of the malignant but not of the benign tumors from all species. An inhibition ELISA, testing homogenates of rat tumors, confirmed that tenascin was present in malignant but not in benign tumors. Thus, tenascin was consistently found to be a stromal marker for epithelial malignancy in the mammary gland. It is concluded that tenascin may be involved in the interactions between the epithelial and mesenchyme-derived (stromal) components of the mammary gland, which are known to influence epithelial carcinogenesis in this organ.

Adenocarcinoma

Biology of mammary fat pad in fetal mouse: capacity to support development of various fetal epithelia in vivo.

Epithelia from the lobular part of submandibular salivary gland, glandular stomach, intestine and colon of 14-day C3H/HeN fetuses, and from pituitary gland and pancreas of 12-day fetuses were recombined with 14-day mammary fat pad precursor tissue and syngrafted under the kidney capsule. The normal organogenetic development typical of the epithelium occurred. The same epithelia taken from earlier stage fetuses did not develop normally. Thus, 14-day fetal mouse mammary fat pad precursor tissue has the capacity to support normal organogenesis of various fetal epithelia of developmentally advanced stages. This supportive capacity is decreased in the fat pad precursor tissue of 17- to 18-day fetal mice and is entirely lost postnatally.

Adipose Tissue

Participation of two different mesenchymes in the developing mouse mammary gland: synthesis of basement membrane components by fat pad precursor cells.

Two different types of mesenchyme, fat pad precursor cells (FP) and fibroblastic cells (MM) are involved in the morphogenesis of mammary gland epithelium of mouse embryo. Especially, an interaction between FP and the epithelium is necessary for its characteristic shaping of ductal branching structure. To assess the relative participations of the mesenchymes, we have analysed the extracellular matrix products by immunofluorescent staining method using antibodies to laminin, proteoheparan sulphate, and fibronectin. The staining patterns suggested that, after the 16th day of gestation when fatty substances first appeared in FP and the epithelial rudiments started to elongate and branch rapidly, FP initiated synthesis of laminin and proteoheparan sulphate, while MM synthesized fibronectin at all times. Attention was also paid to differences in the epithelial basement membranes (BM) concomitant with ones in the mesenchyme. BM were always stained with antibodies to laminin and proteoheparan sulphate. However, topographical differences in thickness were observed: the one facing FP, often seen at the tip region of the end bud, was thin, while the other surrounded by MM, often at the flank region of the duct, was thick. Specific elaboration of BM-like extracellular matrix products by FP may attribute to observed differences in BM thickness which are related to the characteristic shaping of the mammary gland.

Adipose Tissue