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Biomedical subjects

K Goi

Publications and source records attributed to K Goi.

32 records · Page 2Linked to original sources

p16/MTS1/INK4A gene is frequently inactivated by hypermethylation in childhood acute lymphoblastic leukemia with 11q23 translocation.

The p16 gene encoding a specific inhibitor of cyclin-dependent kinases 4 and 6 has been reported to be inactivated at a variety of rates in malignant tumors. We studied frequency and mechanism of inactivation of the p16 gene in various types of childhood acute lymphoblastic leukemia (ALL) using 36 leukemic cell lines established from children (B precursor-ALL, 28; B-ALL/Burkitt's lymphoma, 3; and T-ALL, 5). On Southern blot, homozygous deletions or hemizygous deletions with rearrangement were detected in 14 cell lines. The expression of p16 protein was not observed on Western blot in 18 of 22 cell lines with intact p16 gene, but induced in 16 cell lines after treatment with the demethylating agent, indicating the silencing of the p16 gene by hypermethylation. Of note, the p16 gene was inactivated by hypermethylation of the 5' CpG island in nine of nine cell lines with 11q23 translocation, but was restored with the treatment of the demethylating agent. Partial methylation of the p16 gene was also demonstrated in three of eight primary leukemia samples with this translocation, suggesting that the p16 gene inactivation by hypermethylation might play a role in the leukemogenesis and disease progression of ALL with 11q23 translocation.

Blotting, Southern↗

Clonal hematopoiesis in acquired aplastic anemia revealed by rearrangement of the immunoglobulin heavy chain gene-JH region.

We report on a female patient with acquired aplastic anemia whose bone marrow cells showed DNA rearrangement of the immunoglobulin-JH region that disappeared after 1 month with recovery of hematopoiesis through treatment with granulocyte colony-stimulating factor (G-CSF) and immunosuppressive drugs. The patient is now 2 years and 6 months from onset, and her hematopoiesis is almost within normal limits without medication. This finding provides new data supporting clonal hematopoiesis in acquired aplastic anemia but does not imply that the disease is resistant to immunosuppressive therapy.

Anemia, Aplastic↗

Defective control of apoptosis, radiosensitivity, and spindle checkpoint in ataxia telangiectasia.

We examined the regulation of apoptosis, radiosensitivity, and spindle checkpoint in response to DNA-damaging agents in ataxia telangiectasia (AT)-derived lymphoblastoid cell lines (AT-LCLs), which lack AT mutated (ATM) protein expression. In addition to the previous findings that AT-LCLs are defective in regulation of cell cycle at the G1, S, and G2-M checkpoints in response to X-ray irradiation (X-IR) and are highly sensitive to X-IR (J. Biol. Chem., 271: 20486-20493, 1996), we showed for the first time that AT-LCLs were defective in X-IR-associated spindle checkpoint control. The cells were also resistant to early apoptosis as much as LCLs derived from patients with Li-Fraumeni syndrome (LFS-LCLs). Terminal deoxynucleotidyl transferase-mediated nick end labeling assay of LCLs, however, demonstrated a significant increase in apoptotic cells among AT-LCLs cultured over a longer period after X-IR. These findings were in contrast to those of LFS-LCL, which showed very little increase in terminal deoxynucleotidyl transferase-mediated nick end labeling-positive population, even in cells with hyperploidy. Thus, although early apoptosis and cell cycle controls in response to DNA damage are disrupted in both ATM and p53 mutations, cells from AT patients are much more susceptible to late-onset apoptosis than those of LFS. These differences may depend on the level of accumulation of DNA damage and/or threshold that triggers late-onset cell death in ATM or p53 mutations. Our findings allow a better understanding of the role of ATM in p53-dependent and independent signal transduction pathways in response to DNA damaging agents.

Apoptosis↗

Leukemic cells with 11q23 translocations express granulocyte colony-stimulating factor (G-CSF) receptor and their proliferation is stimulated with G-CSF.

We report a 20-month-old boy with acute lymphoblastic leukemia with the 11q23 translocation whose blasts markedly increased in peripheral blood after intravenous granulocyte colony-stimulating factor (G-CSF) administration, but disappeared after stopping G-CSF. The in vitro study showed that the leukemic cells separated from this patient expressed G-CSF receptor (G-CSFR) and an addition of G-CSF stimulated their proliferation by 3H-thymidine incorporation assay (stimulation index, 4.9). To clarify whether or not leukemic cells with 11q23 translocations generally express G-CSFR and show proliferative response to G-CSF, we performed the similar in vitro experiments using eight leukemic cell lines with 11q23 translocations. We found that all cell lines examined expressed G-CSFR (20-98%) and proliferation of seven leukemic cell lines was significantly enhanced in response to G-CSF (stimulation index >1.5 in five cell lines), suggesting a possible participation of the G-CSF/G-CSFR interaction in the process of growth regulation of leukemic cells with 11q23 translocations.

Antineoplastic Combined Chemotherapy Protocols↗

Transient increase in CD45RO expression on T lymphocytes in infected newborns.

Although infections are a significant cause of mortality and long-term morbidity of newborns, the early diagnosis of neonatal infections remains difficult. It has been shown recently that up-regulation of CD45RO expression on umbilical cord lymphocytes might be a good indicator for intrauterine viral infections. To evaluate clinical relevance of changes in CD45 isoforms to the diagnosis of neonatal infections, we examined CD45RA and CD45RO expression on total, CD4+, and CD8+ lymphocytes from newborns. Lymphocytes from 55 newborns who were hospitalized in Kiyose Metropolitan Children's Hospital or Yamanashi Medical University Hospital were analyzed. Newborns were classified into three groups according to the possibility of bacterial or viral infection; I ("no" infection, n = 24), II ("possible" infection, n = 17), and III ("definite" infection, n = 14). Results were compared between two of three groups. The CD45RO expression on total or CD4+ lymphocytes in group III (bacterial 12, viral 2) was significantly higher than that in group I or II. Particularly, the CD45RO expression on CD4+ lymphocytes was always greater than 10% in group III, and showed no overlap with the respective value in group I. After termination of infection, the increased CD45RO expression in group III gradually returned to normal levels. These results indicate that not only viral but also bacterial infections trigger transient and reversible changes in CD45 isoform expression by neonatal CD4+ T lymphocytes. This may be a novel marker for the early diagnosis of neonatal infections.

CD3 Complex↗

DNA damage-associated dysregulation of the cell cycle and apoptosis control in cells with germ-line p53 mutation.

Lymphoblastoid cell lines (LCLs) with heterozygous p53 mutations at residues 286A, 133R, 282W, 132E, and 213ter were established from five independent Li-Fraumeni syndrome families. When cell cycle regulation in response to gamma-irradiation was studied, these LCLs showed an abnormal G1 checkpoint associated with defective inhibition of cyclin E/cyclin-dependent kinase 2 activity in all cases except for 282W LCL, which showed a normal G1 checkpoint. On the other hand, the control of S-phase-G2 as determined by cyclin A/cyclin-dependent kinase 2 activity was defective in all these LCLs. The mitotic checkpoint was also defective in the two LCLs analyzed as either competent or incompetent for G1 arrest. When radiation-induced apoptosis, which requires wild-type p53 function under optimal conditions, was studied, all of these LCLs showed significant failure compared to normal LCLs. These findings indicate that although p53-dependent transactivation and G1-S-phase cell cycle control are variably dysregulated, the induction of apoptosis and control of the cell cycle at S-phase-G2 and the mitotic checkpoint in response to DNA-damaging agents are consistently dysregulated in heterozygous mutant LCLs. This suggests that these dysfunctions underlie, at least in part, the susceptibility of Li-Fraumeni syndrome families to cancer. Furthermore, the approach presented is a potentially useful method for studying individual carriers of different germ-line p53 mutations and different biological features.

Adolescent↗

Dissociation between cell cycle arrest and apoptosis can occur in Li-Fraumeni cells heterozygous for p53 gene mutations.

The radiation response was investigated in two lymphoblastoid cell lines (LBC) derived from families with heterozygous germ-line missense mutations of p53 at codon 282 (LBC282) and 286 (LBC286), and compared to cells with wt/wt p53(LBC-N). By gel retardation assays, we show that p53-containing nuclear extracts from irradiated LBC282 and LBC286 markedly differ in their ability to bind to a p53 DNA consensus sequence, the former generating a shifted band whose intensity is 30-40% that of LBC-N, the latter generating an almost undetectable band. Unlike LBC286, which fail to arrest in G1 after irradiation, LBC282 have an apparently normal G1/S checkpoint, as they arrest in G1, like LBC-N. While in LBC-N, accumulation of p53 and transactivation of p21WAF1 increase rapidly and markedly by 3 h after exposure to gamma-radiation, in LBC286 there is only a modest accumulation of p53 and a significantly delayed and quantitatively reduced transactivation of p21WAF1. Instead, in LBC282 while p53 levels rise little after irradiation, p21WAF1 levels increase rapidly and significantly as in normal LBC. Apoptotic cells present 48 h after irradiation account for 32% in LBC-N, 8-9% in LBC282 and 5-7% in LBC286, while the dose of gamma-radiation required for killing 50% of cells (LD50) is 400 rads, 1190 rads and 3190 rads, respectively, hence indicating that the heterozygous mutations of p53 at codon 282 affects radioresistance and survival, but not the G1/S cell cycle control. In all LBC tested, radiation-induced apoptosis occurs in all phases of the cell cycle and appears not to directly involve changes in the levels of the apoptosis-associated proteins bcl-2, bax and mcl-1. Both basal as well as radiation-induced p53 and p21WAF1 proteins are detected by Western blotting of FACS-purified G1, S and G2/M fractions from the three cell lines. p34CDC2-Tyr15, the inactive form of p34CDC2 kinase phosphorylated on Tyr15, is found in S and G2/M fractions, but not in G1. However, 24 h after irradiation, its levels in these fractions diminish appreciably in LBC-N but not in the radioresistant LBC286 and LBC282. Concomitantly, p34CDC2 histone H1 kinase activity increases in the former, but not in the latter cell lines, hence suggesting a role for this protein in radiation-induced cell death. Altogether, this study shows that, in cells harbouring heterozygous mutations of p53, the G1 checkpoint is not necessarily disrupted, and this may be related to the endogenous p53 heterocomplexes having lost or not the capacity to bind DNA (and therefore transactivate target genes). Radiation-induced cell death is not cell cycle phase specific, does not involve the regulation of bcl-2, bax or mcl-1, but is associated with changes in the phosphorylation state and activation of p34CDC2 kinase.

Apoptosis↗

[Cord blood stem cell transplantation for infantile acute lymphoblastic leukemia after primary cytomegalovirus infection].

We report a 1-year-old boy with infantile lymphoblastic leukemia in first complete remission who received a cord blood stem cell transplantation (CBSCT) from an HLA identical sibling. We collected 120 ml of cord blood when his brother was born, which contained 4.2 x 10(8) mononuclear cells (4.2 x 10(7)/kg) and 3.1 x 10(5) CFU-GM (3.1 x 10(4)/kg). One month prior to transplantation, he showed persistent fever and liver dysfunction, and was finally diagnosed as having primary cytomegalovirus (CMV) infection which was demonstrated by elevation of serum anti-CMV-IgM. The administration of ganciclovir dramatically improved the clinical symptoms and abnormal laboratory findings, and was continued up to 1 month after transplantation to suppress the CMV reactivation. The preconditioning regimen consisted of busulfan (16 mg/kg/4 days) and cyclophosphamide (120 mg/kg/2 days), and cyclosporin A (CyA) alone was used for graft-versus-host disease (GVHD) prophylaxis. Fever suspicious of grade I GVHD developed on day 19, but subsided by increasing the dose of CyA. The WBC and platelet counts reached greater than 1,000/microliter and 50 x 10(3)/microliter on days 12 and 42, respectively. It is now at 13 months since transplantation, and he remains in a disease free state.

Antiviral Agents↗

Mechanisms of glucocorticoid resistance in human leukemic cells: implication of abnormal 90 and 70 kDa heat shock proteins.

The unliganded glucocorticoid receptor is a multi-oligomer complex consisting of a ligand-binding protein with which two 90 kDa heat shock proteins (hsp90s) are associated. Upon binding of glucocorticoid to the receptor, the ligand-binding protein, which dissociated from hsp90s, enters the nucleus, binds to a specific site in DNA, and thus transmits signal(s). The 70 kDa heat shock protein (hsp70) also works as a molecular chaperone when the ligand-binding protein enters the nucleus. Regarding the mechanisms of glucocorticoid resistance, a decreased expression of glucocorticoid receptor and a mutant protein with low ligand binding affinity have been reported. In the present study, to address other mechanisms of glucocorticoid resistance, we examined the expression of hsp90 and hsp70 in addition to the number of glucocorticoid-binding sites and their affinity using glucocorticoid-sensitive and -resistant human leukemic cell lines. We showed that two of nine resistant cell lines with normal glucocorticoid-binding proteins express aberrant hsp90 and extremely low hsp70, while another seven resistant cell lines had decreased binding sites with normal hsps. These results suggest that there are at least two independent mechanisms of glucocorticoid resistance in human leukemic cell lines: the decreased ligand-binding sites and the abnormal hsps expression.

Antineoplastic Agents, Hormonal↗

Flow cytometric functional analysis of multidrug resistance by Fluo-3: a comparison with rhodamine-123.

Using four cell lines including drug-sensitive K562/Parent cells, P-glycoprotein (Pgp)-mediated multidrug resistant (MDR) K562/VCR, K562/ADR and revertant K562/ADR-R cells, two fluorescent agents, Fluo-3 and rhodamine-123 (Rh-123), were compared as indicators in a functional assay of MDR. Cells were incubated with 4 microM Fluo-3 or 1 microM Rh-123 for 45 min and then the intracellular accumulation of the agent was measured using a flow cytometer. Verapamil (20 microM) or cepharanthine (biscoclaurine alkaloid, 10 microM) was added just before the fluorescent agents. Efflux patterns were also studied 60 min after incubation with or without verapamil and cepharanthine. Increased intracellular accumulation and a delayed efflux pattern of Fluo-3 by verapamil and cepharanthine were demonstrated in multidrug resistant K562/VCR and K562/ADR cells, indicating that Fluo-3 is another good indicator of MDR. However, a similar, but lower, increase in uptake and a delayed efflux pattern of Fluo-3 by verapamil and cepharanthine were also demonstrated even in Pgp-non-overexpressed K562/Parent cells. In contrast, accumulation of Rh-123 was not affected by verapamil and cepharanthine. To further study the Pgp dependency of Fluo-3, another cell line, K562/NC16 expressing minimum MDR1 mRNA, was cloned. Increased uptake and a delayed efflux pattern of Fluo-3, but not Rh-123, with verapamil or cepharanthine were again demonstrated in K562/NC16 cells, indicating that intracellular accumulation of Fluo-3 may be non-specifically influenced by verapamil and cepharanthine at very low levels of Pgp-related MDR, while the influx and efflux patterns of Rh-123 may be specifically affected by Pgp overexpression.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Expression of granulocyte colony-stimulating factor receptor on CD10-positive human B-cell precursors.

We examined the expression of CD10 and G-CSF receptor (G-CSFR) on the lymphoid population of mononuclear cells obtained from bone marrow (BM) using two-colour analysis. In the BM of children with ALL in remission, the CD10+ population was significantly increased (20.6 +/- 5.1% compared with that of controls (2.5 +/- 0.5%). More than half (61.3 +/- 2.9%) of the CD10+ cells co-expressed G-CSFR, but not CD13. These results indicate G-CSFR+ B-cell precursors are markedly increased in BM of ALL in remission, suggesting the probable involvement of G-CSF in the human early B-cell ontogeny.

Adolescent↗

A novel 203 kD aberrant BCR-ABL product in a girl with Philadelphia chromosome positive acute lymphoblastic leukaemia.

We report a girl with Ph1-positive ALL with the aberrant BCR-ABL product. In this case, bcr exon 3 jointed not to ordinal abl exon 2 but to exon 3 resulting in the production of a 203 kD BCR-ABL fusion protein with marked tyrosine kinase activity. To our knowledge, this is the first report of an aberrant BCR-ABL product in childhood. This case was characterized with younger age and low leucocyte count at the onset, but relapsed early like the typical Ph1-positive ALL, suggesting the diversity in the clinicopathogenesis of Ph1-positive ALL.

Base Sequence↗