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Biomedical subjects

Takao Koike

Publications and source records attributed to Takao Koike.

At least 19 recordsLinked to original sources

Drug-resistant HIV-1 prevalence in patients newly diagnosed with HIV/AIDS in Japan.

The increasing prevalence of drug-resistant HIV transmission has become a critical epidemic in the world today. Studies in developed countries reported 8-27% of newly diagnosed HIV/AIDS patients are infected by drug-resistant strains. To determine the prevalence of drug-resistant HIV-1 among newly diagnosed cases in Japan, eight HIV/AIDS clinical centers, three public health laboratories and the National Institute of Infectious Diseases conducted a nationwide survey. Between January 2003 and December 2004, 575 newly diagnosed HIV/AIDS patients with both acute and chronic infections were enrolled in the study. Twenty-three cases, including three recently infected patients, were infected with HIV-1 having major drug-resistance mutations, including M41L, D67N, L100I, K103N, V106A, M184I, M184V, L210W, and revertant mutations at the 215 codon in reverse transcriptase and M46I in protease encoding regions. In this newly diagnosed population, we also clarified the prevalence of hepatitis virus coinfection, which was 8.8% for HBV and 4.3% for HCV. In conclusion, the drug-resistant transmission rate was 4.0% in Japan. Although this rate is significantly lower than that of other developed countries, this rate almost reaches the threshold at which baseline genotypic resistance testing would be cost-effective for all infected persons before initiating therapy.

Acute Disease↗

Acute onset of type 1 diabetes accompanied by acute hepatitis C: the potential role of proinflammatory cytokine in the pathogenesis of autoimmune diabetes.

A 22-year-old Japanese woman presented with general fatigue. Five days later, she demonstrated a body temperature of 39 degrees C and a loss in weight of 5kg. She thereafter became unconscious and was taken to Tomakomai City General Hospital. Urinary ketone body was positive, and plasma glucose was 1063mg/dl. The serum asparate aminotransferase and alanine aminotransferase levels were 158 and 1220IU/l, respectively. An arterial blood gas analysis showed metabolic acidosis. Glycated hemoglobin was 10.9%. Urinary C-peptide immnoreactivity was 11microg/day. Anti-glutamic acid decarboxylase antibody was 12.4U/ml. In general, islet-associated autoantibodies are detectable several years before the development of overt autoimmune diabetes, thus suggesting that an autoimmune reaction against beta-cells had already started in this case. On viral examinations, hepatitis C virus (HCV) antibody was negative, while HCV-RNA was positive. Based on these findings, she was diagnosed to have autoimmune diabetes and acute hepatitis C. In addition, her serum interleukin-18 level was elevated to 506pg/ml. The duration of diabetic characteristic symptoms before diagnosis is usually several weeks in most cases of autoimmune diabetes. However, it was extremely short in this case. Taken together, these findings suggested that the progression of autoimmune diabetes might have been accelerated due to the infection of HCV.

Adult↗

A novel mutation of WFS1 gene in a Japanese man of Wolfram syndrome with positive diabetes-related antibodies.

Wolfram syndrome is a rare, autosomal recessive disorder characterized by early-onset diabetes mellitus, optic atrophy and neurological and endocrinological abnormalities. A 47-year-old Japanese man with frequent severe hypoglycemic episodes was diagnosed as Wolfram syndrome based on clinical features and laboratory data. He had positive glutamic acid decarboxylase (GAD) and insulinoma-associated antigen-2 (IA-2) antibodies, both uncommon in this syndrome. Genetic analysis revealed that WFS1 gene of the patient has a homozygous 5 base pairs (AAGGC) insertion at position 1279 in exon 8, causing a frameshift at codon 371 leading to premature termination at codon 443.

Autoantibodies↗

Factor Xa inhibitors: new anti-thrombotic agents and their characteristics.

Factor Xa (FXa) is a key enzyme that is positioned at the convergence of the intrinsic and extrinsic pathways in the blood coagulation cascade, and inactivation by a specific FXa inhibitor effectively prevents the generation of thrombin. Various types of low molecular weight (LMW) heparin, which function as semi-selective and indirect FXa inhibitors, are replacing unfractionated heparin (UFH) as agents for the prevention and treatment of venous thromboembolism (VTE), as well as in initial treatment for coronary events. Of those, heparinoid has been shown to be safer and more effective for the prevention of postoperative VTE than UFH, especially for treatment of heparin-induced thrombocytopenia (HIT). Further, synthetic pentasaccharide has been found to offer advantages over current thromboprophylactic regimens in a number of patients undergoing major orthopedic surgery. Other studies have shown that pentasaccharide is more effective for overall VTE in comparison with LMW heparin, though it was also associated with an increased rate of major bleeding. Synthetic, selective, and direct inhibitors to FXa, such as DX-9065a, are highly potent and orally bioavailable antithrombotic agents that have demonstrated an improved side effect profile, probably by allowing sufficient thrombin to remain for platelet activation and normal hemostasis, while preventing pathological thrombus formation. For thrombosis therapy, the most desirable type of antithrombotic agent is an orally active drug that has a broad range of effective doses and no hemorrhagic side effects. Presently, many types of direct inhibitors are in various stages of clinical trials and expected to provide significant benefits as compared to currently utilized therapy strategies.

Animals↗

One novel and one recurrent mutation in the PROS1 gene cause type I protein S deficiency in patients with pulmonary embolism associated with deep vein thrombosis.

We investigated the molecular basis of type I protein S (PS) deficiency in two unrelated Japanese families, in which both probands developed pulmonary embolism associated with deep vein thrombosis. Nucleotide sequencing of amplified DNA revealed distinct point mutations in the PROS1 gene of the probands, which were designated protein S Sapporo 1 and protein S Sapporo 2. Additional mutations in the PROS1 gene were excluded by DNA sequencing of all exons and intron/exon boundaries. In the 25-year-old Japanese male patient who carried protein S Sapporo 1, we identified a heterozygous A-to-T change in the invariant ag dinucleotide of the acceptor splice site of intron f of the PROS1 gene. This mutation is a novel splice site mutation that impairs normal mRNA splicing, leading to exon 7 skipping, which was confirmed by platelet mRNA analysis. Translation of this mutant transcript would result in a truncated protein that lacks the entire epidermal growth factor-like domain 3 of the PS molecule. In a 31-year-old Japanese male and his younger brother who each carried protein S Sapporo 2, we detected a previously described heterozygous T-to-C transition at nucleotide position 1147 in exon 10 of the PROS1 gene, which predicts an amino acid substitution of tryptophan by arginine at residue 342 in the laminin G1 domain of the PS molecule. Both mutations would cause misfolding of the PS protein, resulting in the impairment of secretion, which is consistent with the type I PS deficiency phenotype.

Adult↗

Hypogammaglobulinemia with a selective delayed recovery in memory B cells and an impaired isotype expression after rituximab administration as an adjuvant to autologous stem cell transplantation for non-Hodgkin lymphoma.

OBJECTIVES: Some studies have indicated patients who received rituximab as adjuvant to stem cell transplantation had an increased risk of developing severe hypogammaglobulinemia. The mechanism of this hypogammaglobulinemia is unknown, although investigators have hypothesized a further delay in the B-cell recovery as one potential etiology. The aim of this study is to clarify the mechanism(s) of this hypogammaglobulinemia. METHODS: A total of 14 patients with high-risk CD20+ lymphoma underwent an autologous peripheral blood stem cell transplantation (APBSCT). After a hematological recovery, rituximab was given weekly for up to four doses as an adjuvant therapy. RESULTS: After a median follow up of 33.5 months, we found six patients (group A) who had hypogammaglobulinemia, while the eight other patients (group B) had normal serum immunoglobulin levels. A phenotypical analysis revealed that group A patients had already achieved B-cell recovery. However, we found a severe delay in the recovery of CD27+ memory B cells, especially in the IgD-/CD27+ switched populations in group A, but CD27 negative naive B-cells reverted to a normal range in both groups. Consistent with this, reverse transcriptase-polymerase chain reaction studies with peripheral blood mononuclear cells revealed that most patients in group A lacked more than two classes of isotype transcripts. CONCLUSIONS: Abnormal repertoires and impaired isotype expression are seen in patients with common variable immunodeficiency, these data suggested that rituximab after APBSCT can affect not only the B-cell quantities, but also the recovery of the B-cell repertoires.

Adult↗

[New insights into the pathogenicity of antiphospholipid antibodies].

Antiphospholipid antibodies (aPL) recognize phospholipid-binding proteins such as beta(2)-glycoprotein I (beta(2)-GPI) and prothrombin, inducing thrombosis and pregnancy morbidities. Pathogenicity of aPL has been established by many in vivo experiments in which administration of aPL resulted in pregnancy losses and/or thrombotic phenomena. The mechanisms how aPL cause such symptoms have been extensively investigated. aPL alters fibrinolysis/coagulation system by suppression of protein C/Z systems in the presence of beta(2)-GPI. B cell epitopes were also studied for specific therapies, resulting in diverse candidates such as domain I, IV or other domains. For T cells, importance of cryptic epitope on domain V was suggested. Recently, activation of endothelial cells, monocytes and thrombocytes by aPL with beta(2)-GPI has been reported. This activation is mainly mediated by p38MAP kinase activation and results in expression of tissue factor and adhesion molecules in endothelial cells and monocytes, thromboxane B2 in thrombocytes. Annexin II, toll-like receptor 4, LDL-receptor family members, and glycoprotein Ib are the candidates for cell surface ligands, suggesting the possibility of their blockades by monoclonal antibodies. Although treatment of APS is now limited to nonspecific anticoagulants or anti-platelet agents, based on these new insights, specific therapies targeting signal molecules and/or cell surface ligands for beta(2)-GPI should be introduced in near future.

Animals↗

[Phosphatidylserine-dependent anti-prothrombin antibody as a new marker for the diagnosis of antiphospholipid syndrome].

Antiphospholipid syndrome (APS) is an autoimmune disorder in which vascular thrombosis and recurrent pregnancy loss occur in patients with antiphospholipid antibodies(aPL). Measurements of the beta2-glycoprotein I-dependent anticardiolipin antibody(aCL) and lupus anticoagulant(LAC) are the only laboratory tests available for the diagnosis of APS. Recently, phosphatidylserine-dependent antiprothrombin antibody(aPS/PT) has been detected. aPS/PT was measured by ELISA using the phosphatidylserine-prothrombin complex as an antigen immobilized on ELISA plates in the presence of CaCl2. In our study of 219 patients with APS and autoimmune diseases, the prevalence of aPS/PT-IgG in those with APS was 42.2%, which was significantly higher than that(4.6%) in patients with autoimmune diseases. Furthermore, aPS/PT was closely associated with APS manifestations with an odds ratio (OR) of 2.92 (95% confidence interval (95% CI): 1.33 to approximately 6.40), whereas the OR for aCL was 2.06 (95% CI: 0.91 to approximately 4.66). In addition, aPS/PT-IgG was strongly correlated with the presence of LAC as detected with a diluted Russell viper venom time test (dRVVT) (OR: 38.2, 95% CI: 13.4 to approximately 109.1). The monoclonal antibody (23-1D) of aPS/PT also prolonged the clotting time in LAC tests (aPTT, dRVVT, and kaolin clotting time) in a concentration-dependent manner. In conclusion, aPS/PT is more closely associated with manifestations of APS and LAC, and positive results from an aPS/PT test can mark thrombotic events in APS patients. The determination of aPS/PT in clinical practice, in conjunction with that of other aPL, may improve the likelihood of recognizing APS.

Abortion, Habitual↗

Clinical analysis of cognitive function in diabetic patients by MMSE and SPECT.

We examined the frequency of cognitive impairment using the mini-mental-status examination (MMSE), as well as cerebral perfusion using single photon emission computed tomography (SPECT) in elderly diabetic patients. Written consent was obtained from all patients prior to their inclusion in this study. An MMSE score of 26 or less was adopted as an indication of cognitive impairment. Following an initial study, a 3-month study incorporating the use of MMSE and SPECT was performed in subjects, some of whom were taking donepezil hydrochloride. Of the 92 subjects enrolled in this study, 38% exhibited cognitive functional impairment and 18% earned MMSE scores of 23 or lower that were indicative of dementia. With regard to their cerebral blood flow pattern as determined by SPECT 217, 31.4 and 34.2% of subjects showed parieto-temporal hypoperfusion, asymmetrical hypoperfusion and fronto-temporal hypoperfusion patterns of abnormalities, respectively; 11.4% displayed unclassifiable findings and 8.5% showed no detectable abnormalities. No significant differences were seen in patients that were taking donepezil hydrochloride compared to those who were not. The incidence of cognitive functional impairment in elderly, diabetic patients was significantly elevated and was accompanied by a reduction in cerebral blood flow in the fronto-temporal region, as determined by SPECT.

Aged↗

Pathogenesis of antiphospholipid antibodies: impairment of fibrinolysis and monocyte activation via the p38 mitogen-activated protein kinase pathway.

Antiphospholipid syndrome (APS) is characterized by recurrent thrombosis or pregnancy morbidity associated with antiphospholipid antibodies (aPL). Impaired fibrinolysis is a contributing factor for the development of thrombosis, and the effect of aPL in the fibrinolytic system has been investigated. Impaired release of tPA and enhanced release of PAI-1 after endothelial activation is reported in patients with APS. Elevated Lipoprotein (a) levels have been found in APS, which results in inhibition of fibrinolytic activity. Phospholipid-bound beta(2)-glycoprotein I (beta(2)GPI) is a major autoantigen for aPLs. beta(2)GPI exerts both anti-coagulant and pro-coagulant properties mainly by interacting with other phospholipid-binding proteins such as coagulation factors and protein C. Dramatic increase in the affinity of beta(2)GPI to the cell surface is induced by binding of pathogenic anti-beta(2)GPI antibodies, which may modify the physiological function of beta(2)GPI and may affect the coagulation/fibrinolysis balance on the cell surface. Using chromogenic assays for measuring fibrinolytic activity, we demonstrated that addition of monoclonal anticardiolipin antibody (aCL) decreases the activity of extrinsic/intrinsic fibrinolysis. Significantly lower activity of intrinsic fibrinolysis was also demonstrated in the euglobulin fractions from APS patients. Endothelial cells and monocytes are activated by aPLs in vitro, resulting in production of tissue factor (TF), a major initiator of the coagulation system. Recently, aPLs are reported to induce thrombocytes to produce thromboxane. The importance of apoE receptor 2 on platelets for the binding of artificially dimerized beta(2)GPI was suggested. By investigating aPL-inducible genes in peripheral blood mononuclear cells, we found that the mitogen-activated protein kinase (MAPK) pathway was up-regulated. Using a monocyte cell line, phosphorylation of p38 MAPK, NF-kappaB translocation to the nuclear fraction, and up-regulated TF mRNA expression were demonstrated after treatment with monoclonal aCL. These phenomena were observed only in the presence of beta(2)GPI. Moreover, a specific p38 MAPK inihibitor SB203580 decreased aCL/beta(2)GPI-induced TF mRNA expression. Thus, aCL/beta(2)GPI plays dual roles in the pathogenesis of APS, firstly by deranging the fibrinolytic system and secondly by activating monocytes, endothelial cells and thrombocytes to produce TF or thromboxane.

Antibodies, Antiphospholipid↗

Antigenic structures recognized by anti-beta2-glycoprotein I auto-antibodies.

Beta2-glycoprotein I (beta2-GPI) is a major antigen for anti-cardiolipin antibodies and their epitopes are cryptic. Conformation of each domain of beta2-GPI was optimized from its crystal structure by energy minimization and by molecular dynamics simulation. Three electrostatic interactions, i.e. D193-K246, D222-K317 and E228-K308, were observed between domains IV and V in the optimized structure that was constructed based on the consensus sequences obtained by the phage-displayed random peptide library. Antigenic structures determined by the epitope mapping mainly consisted of hydrophobic amino acids located on two discontinuous sequences in domain IV. These amino acid clusters, as an epitope, were covered by domain V and were of a hidden nature. A similar but incomplete counterpart to the epitopic clusters was found in domain I but was not in domains II or III. Binding of anti-beta2-GPI auto-antibodies to solid-phase beta2-GPI was significantly reduced either by L replacement for W235, a common amino acid component for the epitopes, or by V replacement for all of D193, D222 and E228. Structural analysis indicated a hypothesis that these electrostatic interactions between domains IV and V retained exposure to W235 and that epitope spreading occurred in the region surrounding W235. Thus, epitopic structures recognized by anti-beta2-GPI auto-antibodies are cryptic and inter-domain electrostatic interactions are involved in their in exposure.

Amino Acid Substitution↗

Phosphorylation of the 6-phosphofructo-2-kinase/fructose 2,6-bisphosphatase/PFKFB3 family of glycolytic regulators in human cancer.

PURPOSE: Fructose 2,6-bisphosphate (F2,6BP) is a potent activator of phosphofructokinase, which is a rate-limiting enzyme of glycolysis. The concentration of F2,6BP depends on the activity of the bifunctional enzyme, 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase (PFK-2/FBPase). Four genes encoding PFK-2/FBPase have been identified and termed PFKFB1 to PFKFB4. PFKFB3 protein is expressed in high levels in human tumors in situ. The purpose of this study was to determine the role of functional interactions between the phosphorylation of PFKFB3 and activated glycolysis in human cancer cells. EXPERIMENTAL DESIGN: cDNA from several human tumor cell lines and human colon carcinoma were analyzed by reverse transcription-PCR to identify different splicing variants of PFKFB3. The effect of phosphorylation of Ser461 was studied by recombinantly replacing this residue with glutamate (PFKFB3S461E). The phosphorylation of PFKFB3 protein in human cancer was determined by immunostaining using an anti-phospho-PFK-2(PFKFB3) antibody. RESULTS: Two splicing variants of PFKFB3 are expressed in human cancer cell lines: PFKFB3-ACG and PFKFB3-AG. Quantitative, real-time PCR analysis confirmed the overexpression of PFKFB3 mRNA in colon carcinoma, with the dominant variant being the PFKFB3-ACG isoform that contains a phosphorylation site at Ser461. Forced expression of PFKFB3-ACG in COS-7 cells resulted in enhanced glycolysis. Introduction of PFKFB3-ACGS461E into COS-7 cells led to increased the lactate production and cell proliferation. Highly phosphorylated PFKFB3 protein was found in human tumor cells, vascular endothelial cells, and smooth muscle cells, as determined by immunostaining with an anti-phospho-PFK-2(PFKFB3) antibody. CONCLUSIONS: These findings support a potential role for the phosphorylation of PFKFB3 protein in the progression of cancer and angiogenesis.

Alternative Splicing↗

A functional variant in FCRL3, encoding Fc receptor-like 3, is associated with rheumatoid arthritis and several autoimmunities.

Rheumatoid arthritis is a common autoimmune disease with a complex genetic etiology. Here we identify a SNP in the promoter region of FCRL3, a member of the Fc receptor-like family, that is associated with susceptibility to rheumatoid arthritis (odds ratio = 2.15, P = 0.00000085). This polymorphism alters the binding affinity of nuclear factor-kappaB and regulates FCRL3 expression. We observed high FCRL3 expression on B cells and augmented autoantibody production in individuals with the disease-susceptible genotype. We also found associations between the SNP and susceptibility to autoimmune thyroid disease and systemic lupus erythematosus. FCRL3 may therefore have a pivotal role in autoimmunity.

Arthritis, Rheumatoid↗

Fas ligand (CD178) cytoplasmic tail is a positive regulator of Fas ligand-mediated cytotoxicity.

The cytotoxic function of CD178 (Fas ligand (FasL)) is critical to the maintenance of peripheral tolerance and immune-mediated tissue pathology. The active site of FasL resides at the FasL extracellular region (FasL(Ext)) and it functions through binding/cross-linking Fas receptor on target cells. In this study, we report that FasL(Ext)-mediated cytotoxicity is regulated by the FasL cytoplasmic tail (FasL(Cyt)). Deleting the N-terminal 2-70 aa (delta70) or N-terminal 2-33 aa (delta33) reduced the cytotoxic strength as much as 30- to 100-fold. By contrast, change in the cytotoxic strength was not observed with FasL deleted of the proline-rich domains (45-74 aa, delta PRD) in the FasL(Cyt). Our study identifies a novel function of FasL(Cyt) and demonstrates that FasL(2-33), a sequence unique to FasL, is critically required for the optimal expression of FasL(Ext)-mediated cytotoxicity.

Amino Acid Sequence↗

Pkd1 regulates immortalized proliferation of renal tubular epithelial cells through p53 induction and JNK activation.

Autosomal dominant polycystic kidney disease (ADPKD) is the most common human monogenic genetic disorder and is characterized by progressive bilateral renal cysts and the development of renal insufficiency. The cystogenesis of ADPKD is believed to be a monoclonal proliferation of PKD-deficient (PKD(-/-)) renal tubular epithelial cells. To define the function of Pkd1, we generated chimeric mice by aggregation of Pkd1(-/-) ES cells and Pkd1(+/+) morulae from ROSA26 mice. As occurs in humans with ADPKD, these mice developed cysts in the kidney, liver, and pancreas. Surprisingly, the cyst epithelia of the kidney were composed of both Pkd1(-/-) and Pkd1(+/+) renal tubular epithelial cells in the early stages of cystogenesis. Pkd1(-/-) cyst epithelial cells changed in shape from cuboidal to flat and replaced Pkd1(+/+) cyst epithelial cells lost by JNK-mediated apoptosis in intermediate stages. In late-stage cysts, Pkd1(-/-) cells continued immortalized proliferation with downregulation of p53. These results provide a novel understanding of the cystogenesis of ADPKD patients. Furthermore, immortalized proliferation without induction of p53 was frequently observed in 3T3-type culture of mouse embryonic fibroblasts from Pkd1(-/-) mice. Thus, Pkd1 plays a role in preventing immortalized proliferation of renal tubular epithelial cells through the induction of p53 and activation of JNK.

Animals↗