Search PubMed⌕ Search

Biomedical subjects

T Shikata

Publications and source records attributed to T Shikata.

At least 55 records · Page 3Linked to original sources

Biased sinusoidal field gel electrophoresis for the separation of large DNA.

In agarose gel electrophoresis, in a steady, continuous field, it is well known that the mobility mu, versus size M relation for linear DNAs (L-DNAs) can be divided into three regimes: Ogston regime I for small DNAs, where M dependence of mu, is weak; entangled but unstretched regime II for intermediate-size L-DNAs (of M < 20 kbp), where mu, sigma M-1 so that efficient fractionation is possible; and entangled and stretched regime III for large L-DNAs, where M dependence of mu s is again weak. Although mu s and the regimen boundaries can be altered by adjusting the gel concentration Cgel and/or the field strength E, the features of the M dependence of mu s are essentially unchanged. As to the effect of DNA topology on mu s, we found that in dilute gels (Cgel < 1.0 wt%) coiled, circular DNAs (C-DNAs) of 2-7 kbp size migrate faster than L-DNAs of comparable size, while in concentrated gels (Cgel > 1.5 wt%) C-DNAs migrate much slower than L-DNAs. To facilitate separation of large DNAs in the regime III range, we proposed biased sinusoidal field gel electrophoresis (BSFGE), which utilizes a sinusoidal field of strength Es and frequency f superposed on a steady bias field of strength Eb.(ABSTRACT TRUNCATED AT 250 WORDS)

Chemical Phenomena↗

Sequence and gene structure of the hepatitis E virus isolated from Myanmar.

Hepatitis E virus (HEV) is a causative agent of enterically transmitted non-A, non-B hepatitis. Hepatitis E occurs not only in sporadic forms but also in epidemic outbreaks in the developing world. We have revealed the nucleotide and predicted amino acid sequences of full cDNA of HEV isolated from sporadic hepatitis E of Myanmar. The genome is 7194 nucleotides long, followed by a poly(A) tail, and has three open reading frames. The nonstructural gene is located in the 5' terminus, while the structural gene is situated in the 3' terminus. Our HEV strain has 98.5% nucleic acid identity with the HEV strain cloned by workers at Genelabs Incorporated from Myanmar. The difference is point nucleotide substitutions. There is a high degree of nucleotide relatedness among HEVs isolated from the same geographical location.

Amino Acid Sequence↗

Detection of precore/core-mutant hepatitis B virus genome in patients with acute or fulminant hepatitis without serological markers for recent HBV infection.

To confirm the possibility that some hepatitis B virus (HBV) variants do not induce HB s antigen (HBsAg), anti-HB core antibody (anti-HBc) and anti-HBc IgM in a transient infection, polymerase chain reaction (PCR) was performed in 20 patients with acute hepatitis and 7 patients with fulminant hepatitis. Patients were diagnosed with non-A, non-B hepatitis by serological markers at admission. PCR successfully amplified the precore/core gene in 5 (25%) of the patients with acute hepatitis and 2 (29%) of the patients with fulminant hepatitis. Subsequent sequencing revealed frequent mutations including precore-defects in the precore/core gene.

Acute Disease↗

An epidemic outbreak of hepatitis E in Yangon of Myanmar: antibody assay and animal transmission of the virus.

An epidemic outbreak of hepatitis E occurred in an army recruit camp of Yangon, Myanmar, in October 1989. One hundred and eleven patients among 600 residents were hospitalized. As high as 83.7% of these patients were positive for the acute phase antibody against hepatitis E virus by an enzyme-linked immunosorbent assay developed in our laboratory. Also, 30.6% of 49 symptom-free residents examined were positive for the antibody. We prepared a stool extract from six patients and inoculated it into 10 rhesus monkeys for a series of three sub-passages. All of them developed acute biochemical hepatitis along with an elevation of antibody levels. A rechallenge with viruses of the present outbreak failed to provoke hepatitis in two monkeys that had previously recovered from acute hepatitis caused by an isolate of sporadic hepatitis E of the same area. Similarly, the rechallenge of the sporadic strain did not induce hepatitis in two monkeys that had been previously infected with the epidemic virus. These data suggested that the subjects would obtain neutralizing antibodies against the hepatitis E virus once infected, and many adult inhabitants of the endemic area had no protective antibodies and were still susceptible to hepatitis E infection.

Adult↗

Histological difference between complete responders and non-responders to interferon therapy of the livers of patients with chronic hepatitis C.

Liver histology was compared in patients with chronic hepatitis C to note the differences between responders and non-responders to interferon treatment. Fifty-eight patients were administered interferon in varying doses and over various periods, and were then followed up for 1 year. According to the improvement status of serum alanine aminotransferase (ALT) levels during this period, the patients were classified into complete responders who showed complete normalization of ALT; partial responders who exhibited a significant decrease, but not complete normalization of ALT; and non-responders who did not reveal any significant decrease of ALT. Before application of the interferon treatment, liver biopsies were analyzed in four parameters and given scores from 0 to 5 for three groups in cord with no prior knowledge of the efficacy. The parameters included necroinflammation, fibrosis/lobular distortion, portal lymphocytic reaction and portal (or fibrous septal) outline destruction. Results indicated that there were no significant differences in the score of necroinflammation and portal lymphocytic reaction between the complete responder group and the non-responder group. In contrast, the complete responder group exhibited weaker fibrosis/lobular distortion and less portal outline destruction than the non-responder group. The partial responder group was more akin to the former group in these parameters. Thus, it is safe to conclude that liver histology may predict the efficacy of interferon treatment.

Adult↗

[Expression of hepatitis C virus genome].

Complementary DNAs from HCV genome were expressed and analyzed. C8-2 protein, a part of NS5, and core protein were synthesized in E. coli. Core protein (JCC) was appeared to be very useful for diagnostic probe of HCV infection. Predicted envelope glycoproteins (E1 and E2/NS1) produced in infected insect cells were glycosylated and secreted into the culture media when the signal sequence of rabies virus G protein was introduced. An ELISA was developed using each purified recombinant protein. Anti-E1 antibody was detected in 20% of patients with non-A, non-B chronic liver diseases, whereas anti-E2/NS1 antibody was detected in more than 88%. These results indicate that the immune responses against these glycoproteins are different.

Animals↗

Heterogeneity within the nonstructural protein 5-encoding region of hepatitis C viruses from a single patient.

Nucleotide (nt) sequence heterogeneity of the hepatitis C virus (HCV) genome derived from a single carrier was investigated. A polymerase chain reaction (PCR) product of 311 bp in the putative nonstructural protein 5-encoding region was directly sequenced, while part of a PCR product was cloned, and sequence analyses were carried out for 27 independent clones. Although 14 of the 27 clones were conserved, ten other types of nt sequences were found. The difference was at most 3 nt (1.1%). A directly determined sequence showed the major sequence of the cloned products. Since most of the nt changes occurred in the third letter of a codon, these nt changes might not have originated from random misincorporation during the PCR. These results of natural divergence of genome population in a single carrier suggest that HCV is a typical RNA virus with a quasi-species nature due to high mutation rates.

Base Sequence↗

Three different patterns of hepatitis C virus infection in chimpanzees.

The relationship between hepatitis C virus RNA and hepatitis C virus-associated antibodies (antibody against the putative capsid protein and C-100 antibody) was determined by nested polymerase chain reaction and enzyme-linked immunosorbent assay in serial serum samples obtained from eight chimpanzees experimentally infected with hepatitis C virus. Three different patterns emerged from the polymerase chain reaction data: the first (group 1) was acute resolving hepatitis with transient appearance of HCV RNA (two cases). The second (group 2) had chronic hepatitis with persistent hepatitis C virus RNA positivity (four cases) and the third (group 3) had chronic hepatitis with intermittent appearance of hepatitis C virus RNA (two cases). In four of eight animals, hepatitis C virus RNA was first detectable in serum 1 wk after inoculation. Although serum HCV RNA was detected in all infected chimpanzees, two were positive only for antibody against the putative capsid protein, whereas two were positive only for antibody to C-100 antigen. In four of eight cases, antibody against the putative capsid protein appeared earlier than did antibody to C-100 antigen, was detected just before or coincident with rising glutamate pyruvate transaminase values and remained positive for a long time even after recovery. Six of eight animals (75%) were still hepatitis C virus RNA positive 1 yr after inoculation, suggesting that the risk of development of the chronic carrier state is high in hepatitis C virus infection. Furthermore, there did not appear to be a good correlation between antibody titer in serum and hepatitis C virus infectivity titer.

Alanine Transaminase↗

Evaluation of three hepatitis C virus-related antibodies C100, KCL-163, JCC. Tests for screening blood donors.

To evaluate the most effective method for detecting hepatitis C virus (HCV) carriers in a large population of blood donors, HCV-related antibodies were measured in 919 donor serum samples using three different enzyme-linked immunosorbent assays. The antibodies were C100 and KCL-163, nonstructural proteins of HCV, as well as JCC, a translation product of the presumptive HCV core gene. Fourteen (1.5%), 12 (1.3%), and 13 (1.4%) specimens were positive for anti-C100, anti-KCL-163, and anti-JCC, respectively. HCV RNA was detected by the polymerase chain reaction in seven (25.0%) of the 28 specimens that were anti-HCV-positive by at least one of the three assays. Four of the seven specimens were detected by anti-C100 screening, while the remaining three were not. All seven specimens were positive for KCL-163 and/or JCC antibodies. These findings suggest that screening for both KCL-163 and JCC antibodies may be of particular use in accurately identifying HCV-positive blood.

Adult↗

Interferon-inducible gene expression in chimpanzee liver infected with hepatitis C virus.

The molecular host response to hepatitis C virus (HCV) infection was examined by isolation of HCV-induced genes from a cDNA library constructed from chimpanzee liver during the acute phase of hepatitis C. Two cDNA clones, 130-7 and 130-51, were obtained by differential hybridization with cDNA probes prepared from poly(A)+ RNAs of infected and uninfected livers. Northern blot analysis revealed that the 130-7 and 130-51 cDNAs were expressed as 1.5- and 1.0-kb products, respectively, in chimpanzee liver and that their induction rates of the two were 20 and 4, respectively. Nucleotide sequence analyses of these cDNA inserts showed that the sequence of cDNA 130-7 was that of a class I major histocompatibility antigen and that the sequence of cDNA 130-51 was 98% homologous with a human interferon-inducible mRNA. These results suggest that HCV infection may actively induce interferon, which in turn induces the expressions of these interferon-inducible genes. Furthermore, the high expression of HLA class I antigen in the acute phase of hepatitis C suggests that liver cell injury in HCV infection may be mediated by cytotoxic T cells that recognize viral antigen in association with HLA class I antigen.

Animals↗

Hepatitis E virus: cDNA cloning and expression.

Viral hepatitis E is endemic, frequently provoking epidemic outbreaks in many developing countries. We have attempted to clone the viral genome and to develop an antibody assay system. A lambda gt11 cDNA library was constructed from the bile juice containing putative causative viruses and was immunoscreened by the antisera obtained from patients and monkeys infected with hepatitis E. Three virus-specific clones were isolated and were revealed to overlap one another in sequence, with 1,459 nucleotides in total length. These clones direct the synthesis of polypeptides probably having common immunological epitope(s). Immunoplaque assay revealed the occurrence of antibodies against this epitope in the sera from experimental monkeys with the convalescent phase and from patients of Myanmar, Nepal and India. The data indicate that the cDNA fragments are useful for immunodiagnosis of hepatitis E.

Amino Acid Sequence↗

Sequence comparison of the capsid region of hepatitis E viruses isolated from Myanmar and China.

Hepatitis E viruses (HEVs) were isolated during epidemics, one from Myanmar (formerly called Burma) and one from China and were partially sequenced. Another HEV Myanmar strain from sporadic hepatitis was previously sequenced by us. A cDNA sequence comparison was performed among them in the 3'-terminal region, approximately 750-base long. This region contained at least two immunological epitopes and was considered to correspond to the structural protein. The nucleotide sequence identity was 97.2% between the two Myanmar strains and 93.3 and 92.5% between the two Myanmar and the China strain. The deduced amino acid sequence identity ranged from 98.4 to 100.0% among the three strains. Thus this segment was well conserved on the amino acid level among the different strains isolated from these two Asian countries, although the China strain diverged more from the Myanmar strains on the nucleotide sequence level. This data may provide important information for the development of a vaccine and for identification of the virological link between different geographical locations.

Amino Acid Sequence↗

Oncogene expression in the liver tissue of patients with nonneoplastic liver disease.

The expression of cellular oncogenes in nonneoplastic human liver tissue was examined to determine if there was a correlation between oncogene expression and physiologic regeneration in liver disease. Human liver tissue specimens from 70 patients with various histologic findings from almost normal to cirrhosis were examined (using northern blot analysis) for the expression of nine cellular oncogenes. With c-K-ras, four RNA bands (5.6-kilobase [kb], 2.1-kb, 1.5-kb, and 1.2-kb RNA species) were detected in all liver tissue examined. Expression of c-fos was also detected in a few samples examined when 50-micrograms samples of total RNA were applied. Other oncogenes such as H-ras, myc, erbB, raf, fms, fes, and myb were not detected. These results indicate that particular oncogene(s) may not be highly expressed during liver regeneration in human liver disease, or that populations of regenerating hepatocytes may be too small to show significant elevations of oncogene expression. The new finding of a constant expression of c-K-ras in human liver tissue suggests that it is linked to essential hepatocellular function rather than carcinogenesis.

Adult↗