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Biomedical subjects

Y Kuroda

Publications and source records attributed to Y Kuroda.

At least 127 records · Page 7Linked to original sources

Successful rescue of severe recurrent hepatitis C with interferon and ribavirin in a liver transplant patient.

BACKGROUND: Rapid graft dysfunction caused by hepatitis C virus (HCV) reinfection, although uncommon, is a disastrous complication in liver transplant patients. Finding an effective therapy for this subgroup of patients with severe recurrent HCV is a priority. METHOD: We describe a successful rescue of a 46-year-old man with recurrent hepatitis C (HCV genotype 1b) using long-term interferon (IFN) and ribavirin. The patient had a very aggressive type of posttransplantation HCV infection, as judged by biochemical and histologic findings. RESULTS: Despite high pretreatment values of serum alanine aminotransferase (ALT; peak value of 901 IU/L) and HCV-RNA (2.3 x 10(6) copies/ml), the combination therapy with IFN and ribavirin produced a rapid normalization of the serum ALT values, accompanied by the clearance of serum HCV-RNA. Although HCV-RNA reappeared in the serum at 3 months, the patient had continued ALT normalization and histological improvement with follow-up of over 26 months to date after the initiation of the combination therapy. CONCLUSION: This observation suggests that IFN in combination with ribavirin may offer an effective therapeutic option for liver transplant patients with severe recurrent hepatitis C.

Alanine Transaminase↗

Alzheimer's beta-amyloid, human islet amylin, and prion protein fragment evoke intracellular free calcium elevations by a common mechanism in a hypothalamic GnRH neuronal cell line.

A growing number of reports suggest that elevated levels of extracellular Alzheimer's beta-amyloid protein alter the homeostasis of free [Ca(2+)](i) in different cell types of the mammalian brain. In line with these results, we have previously shown that AbetaP[1-40] forms cation-selective channels (Ca(2+) included) across artificial planar bilayers formed from acidic phospholipids and across excised membrane patches from immortalized hypothalamic GnRH neurons (GT1-7 cells), suggesting that the nonregulated Ca(2+)-influx through these spontaneously formed "amyloid channels" may provide a mechanism to explain its toxicity (1). We have now found and report here that the application of AbetaP[1-40] to GT1-7 neurons consistently elevates [Ca(2+)](i) levels. We also found that human islet amylin and the prion protein fragment (PrP106-126), peptides that acquire beta-pleated sheet conformation in water solutions and have been reported to form ion channels across planar bilayer membranes, also increase cytosolic free calcium in GT1-7 neurons. Searching for protective agents, we found that soluble cholesterol, known to decrease the fluidity of the cell membrane, inhibits AbetaP[1-40]-evoked [Ca(2+)](i) rise. These results suggest that unregulated Ca(2+) entry across amyloid channels may be a common mechanism causing cell death, not only in diseases of the third age, including Alzheimer's disease and type 2 diabetes mellitus, but also in prion-induced diseases.

Alzheimer Disease↗

Folding of bovine pancreatic trypsin inhibitor (BPTI) variants in which almost half the residues are alanine.

Recent studies indicate that a fraction of the information contained in an amino acid sequence may be sufficient for specifying a native protein structure. An earlier alanine-scanning experiment conducted on bovine pancreatic trypsin inhibitor (BPTI; 58 residues) suggested that if cumulative mutations have additive effects on protein stability, a native protein structure could be built from BPTI sequences that contained many alanine residues distributed throughout the protein. To test this hypothesis, we designed and produced six BPTI mutants containing from 21 to 29 alanine residues. We found that the melting temperature of mutants containing up to 27 alanine residues (48 % of the total number of residues) could be predicted quite well by the sum of the change in melting temperature for the single mutations. Additionally, these same mutants folded into a native-like structure, as judged by their cooperative thermal denaturation curves and heteronuclear multiple quantum correlation (HMQC) NMR spectra. A BPTI mutant containing 22 alanine residues was further shown by 2D and 3D-NMR to fold into a structure very similar to that of native BPTI, and to be a functional trypsin inhibitor. These results provide insight into the extent to which native protein structure and function can be achieved with a highly simplified amino acid sequence.

Alanine↗

Enantioselective binding analysis of verapamil to plasma lipoproteins by capillary electrophoresis-frontal analysis.

Capillary electrophoresis coupled with frontal analysis was applied to the study of enantioselective binding of verapamil (VER) to plasma lipoproteins. The drug-lipoprotein mixed solution, which had been in the binding equilibrium, was hydrodynamically introduced into a non-coated fused-silica capillary. Since VER is positively charged in the neutral run buffer (pH 7.4), the unbound VER enantiomers migrated toward the cathodic end much faster than negatively charged lipoproteins and their bound forms. Once unbound VER migrated apart from lipoprotein, the bound VER was quickly released from the protein to maintain the binding equilibrium. Thus, VER migrated as a zone through the capillary and gave a trapezoidal peak with a plateau region on the electropherogram. The VER concentration in this plateau region was equal to the unbound VER concentration in the initial sample solution. It was found that the bindings of VER to high-density lipoprotein (HDL), low-density lipoprotein (LDL) and oxidized LDL were not site-specific and not enantioselective. Partition-like binding to lipid part of these lipoproteins seemed to be dominant. The total binding affinities of LDL to VER were about seven-times stronger than those of HDL, and the oxidation of LDL by copper ion enhanced the binding affinities significantly.

Electrophoresis, Capillary↗

Molecular cloning and expression analysis of a putative nuclear protein, SR-25.

We cloned a full-length mouse cDNA and its human homologue encoding a novel protein designated as "SR-25." In Northern blot analysis, SR-25 mRNA was expressed in all organs tested, and relatively abundant in testis and thymus. Deduced amino acid sequences of mouse SR-25 and human SR-25 showed 77.7% identity. SR-25 has a serine-arginine repeat (SR repeat) and two types of amino acid clusters: a serine cluster and a highly basic cluster. Based on the presence of many nuclear localizing signals and a similarity to RNA splicing proteins, SR-25 is strongly suggested to be a nuclear protein and may contribute to RNA splicing.

Amino Acid Sequence↗

Endogenous adenosine regulates the effects of low-frequency stimulation on the induction of long-term potentiation in CA1 neurons of guinea pig hippocampal slices.

A train of low-frequency afferent stimuli (LFS, 1 Hz, 1000 pulses), given 60 min prior to a tetanus (100 Hz, 100 pulses), suppresses the induction of long-term potentiation (LTP) in which a short-term potentiation decreases gradually back to the pre-tetanic level within 40-50 min (LTP suppression). We investigated the effects of adenosine A1 or A2 receptor antagonists (8-cyclopentyltheophylline (8-CPT) and CP-66713, respectively) on LTP suppression in CA1 neurons of guinea pig hippocampal slices. When the LFS was delivered in the presence of 8-CPT (1 microM), LTP suppression was not significantly affected. However, when LFS was delivered in the presence of CP-66713 (10 microM), LTP suppression was inhibited, leading to successful LTP induction. These results indicate that endogenous adenosine, acting via A2 receptors, is involved in the mechanism of LTP suppression.

Adenosine↗

Differential gene expression between human neurons and neuronal progenitor cells in culture: an analysis of arrayed cDNA clones in NTera2 human embryonal carcinoma cell line as a model system.

To elucidate the highly complex expression pattern of the genes involved in human neuronal differentiation, differential gene expression between human neurons and neuronal progenitor cells was investigated by analysis of a cDNA expression array in a pluripotent human embryonal carcinoma cell line NTera2 (NT2), a model system of human neuronal differentiation. Among 588 arrayed cDNA clones, 87 genes showed a differential expression pattern between undifferentiated neuronal progenitor cells (NT2-U) and NT2-derived differentiated neurons induced by treatment with retinoic acid (RA) (NT2-N), while 26 genes could not be analyzed due to high background signals. The levels of expression of 76 genes, including those encoding a group of transcription factors, intracellular signal-transducing proteins, cell death-regulatory proteins, and growth factors/cytokines/neurotransmitters and their receptors, were elevated after neuronal differentiation, while the levels of 11 genes, including those coding for cellular proliferation-related proteins, were decreased. Among the differentially expressed genes following induction of neuronal differentiation, significant up-regulation of the growth-associated protein (GAP-43), low-affinity nerve growth factor receptor p75 (LNGFR), and defender against apoptotic cell death (DAD1) mRNAs and substantial down-regulation of the proliferation-associated gene (PAG), fibroblast growth factor receptor-1 (FGFR-1), and cellular RA-binding protein-II (CRABP-II) mRNAs were verified by Northern blot analysis. These results indicate that the analysis of cDNA expression arrays provides a useful approach for screening and identification of a set of distinct genes that undergo highly complex regulation during human neuronal differentiation.

Blotting, Northern↗

Molecular cloning and tissue-specific expression of a new member of the regenerating protein family, islet neogenesis-associated protein-related protein.

Islet neogenesis-associated protein (INGAP) is a protein expressed during islet neogenesis. We have cloned a novel cDNA having a similar sequence to INGAP cDNA. The cDNA encodes 175 amino acids designated INGAP-related protein (INGAPrP). INGAP is expressed in cellophane-wrapped pancreas, but not in normal pancreas, whereas INGAPrP was abundantly expressed in normal pancreas.

Acute-Phase Proteins↗

Inherited polymorphism in the N-acetyltransferase 1 (NAT1) and 2 (NAT2) genes and susceptibility to gastric and colorectal adenocarcinoma.

The polymorphic arylamine N-acetyltransferases (NAT1 and NAT2) have been implicated in increased susceptibility to certain malignancies. We analyzed genetic polymorphisms in both the NAT1 and NAT2 genes among 140 gastric adenocarcinoma patients, 103 colorectal adenocarcinoma patients and 122 healthy controls from Japan. The frequency of the specific genotype NAT1*10 allele, which contains a variant polyadenylation signal, was higher among all gastric adenocarcinoma cases, but this increase did not reach statistical significance. After grouping according to tumor differentiation of gastric adenocarcinoma patients, NAT1 polymorphism was a risk factor among the well-differentiated type of tumors (OR = 3.03, 95% CI 1. 08-8.46). Stratifying by smoking status, we found that the OR for heavy smokers with the NAT1*10 allele was 2.97 (95% CI 1.23-7.14). When the combined risk of NAT1*10 allele from smoking and tumor differentiation was calculated, we found that the risk of the NAT1*10 allele with heavy smoking was increased among the well - differentiated type of gastric adenocarcinoma (OR = 4.24, 95% CI 0. 87-20.6). The NAT1*10 genotype was not a significant risk factor in colorectal adenocarcinoma. No statistically significant differences were observed in the frequency of NAT2 rapid acetylation genotype in gastric (91.4%) or colorectal (95.2%) adenocarcinoma patients when compared with the control population (94.3%). Our results suggest the NAT1*10 allele may be an important genetic determinant of the well-differentiated type of gastric adenocarcinoma, which may be induced by smoking.

Acetyltransferases↗

Allogeneic peripheral blood stem cell transplantation in children with hematologic malignancies from HLA-matched siblings.

BACKGROUND: Despite the ethical problem of using granulocyte colony-stimulating factor (G-CSF) in normal children, allogeneic peripheral blood stem cell transplantation (PBSCT) might have advantages over allogeneic bone marrow transplantation (BMT). PROCEDURE: Eleven HLA-matched sibling donors aged 2-16 years received 10 microg/kg/day G-CSF for 5 days and underwent apheresis to harvest peripheral blood stem cells (PBSC). PBSC were then cryopreserved until infusion. The 11 corresponding patients aged 8 months to 14 years with high-risk hematological malignancies received busulfan (16 mg/kg or 600 mg/m(2)) and melphalan (210 mg/m(2)) as a preparative regimen. Graft-versus-host disease (GVHD) prophylaxis consisted of cyclosporine and methylprednisolone. RESULTS: All of the donors tolerated G-CSF administration and apheresis procedures. The patients received a median of 5.8 (range 1. 4-11.5) x 10(6)/kg CD34(+) cells, 17.2 (3.8-36.0) x 10(5)/kg colony forming units-granulocyte/macrophage (CFU-GM), and 3.5 (1.4-7.1) x 10(8)/kg CD3(+) cells. All of the patients showed prompt engraftment, with a median time to reach an absolute neutrophil count (ANC) above 0.5 x 10(9)/liter of 10 (9-13) days. Grade I acute GVHD occurred in seven patients (64%), whereas grade II-IV acute GVHD was not seen. Chronic GVHD occurred in four patients (40%) among 10 patients evaluable for chronic GVHD. Three patients showed extensive chronic GVHD. Currently, eight patients (73%) are alive and disease-free for a median follow-up of 775 (103-1,069) days. CONCLUSIONS: Allogeneic PBSCT is feasible in the pediatric population, and PBSC harvest is an alternative to BM harvest in donors who are not eligible for BM harvest. Furthermore, PBSC were successfully collected in pediatric donors with peripheral access. The choice of a stem cell source should be based on the risk/benefit assessment for both patients and donors.

Adolescent↗

Mutations in the X-linked pyruvate dehydrogenase (E1) alpha subunit gene (PDHA1) in patients with a pyruvate dehydrogenase complex deficiency.

Defects in the pyruvate dehydrogenase (PDH) complex are an important cause of primary lactic acidosis, a frequent manifestation of metabolic disease in children. Clinical symptoms can vary considerably in patients with PDH complex deficiencies, and almost equal numbers of affected males and females have been identified, suggesting an autosomal recessive mode of inheritance of the disease. However, the great majority of PDH complex deficiencies result from mutations in the X-linked pyruvate dehydrogenase (E1) alpha subunit gene (PDHA1). The major factors that contribute to the clinical variation in E1alpha deficiency and its resemblance to a recessive disease are developmental lethality in some males with severe mutations and the pattern of X-inactivation in females. To date, 37 different missense/nonsense and 39 different insertion/deletion mutations have been identified in the E1alpha subunit gene of 130 patients (61 females and 69 males) from 123 unrelated families. Insertion/deletion mutations occur preferentially in exons 10 and 11, while missense/nonsense mutations are found in all exons. In males, the majority of missense/nonsense mutations are found in exons 3, 7, 8 and 11, and three recurrent mutations at codons R72, R263 and R378 account for half of these patients with missense/nonsense mutations (25 of 50). A significantly lower number of females is found with missense/nonsense mutations (25). However, 36 females out of 55 affected patients have insertion/deletion mutations. The total number of female and male patients is thus almost the same, although a difference in the distribution of the type of mutations is evident between both sexes. In many families, the parents of the affected patients were studied for the presence of the PDHA1 mutation. The mutation was never present in the somatic cells of the father; in 63 mothers studied, 16 were carriers (25%). In four families, the origin of the new mutation was determined to be twice paternal and twice maternal.

Amino Acid Sequence↗

Pancreatitis-associated ascitic fluid increases intracellular Ca(2+) concentration on hepatocytes.

BACKGROUND: We have reported that pancreatitis-associated ascitic fluid (PAAF) contains a cytotoxic factor(s) inducing apoptosis on renal tubular cells and hepatocytes. It has been suggested that elevation of intracellular Ca(2+) concentration ([Ca(2+)](i)) is associated with the development of cell damage and apoptosis. METHODS: To clarify the mechanism of hepatocellular injury in acute pancreatitis, the effect of PAAF on hepatocyte [Ca(2+)](i) was investigated. Primary cultures of rat hepatocytes were loaded with Fura-2/acetoxymethyl, and the changes of [Ca(2+)](i) were measured using spectrofluorometer. RESULTS: The baseline of hepatocyte [Ca(2+)](i) was 172 +/- 17 nM. [Ca(2+)](i) increased from 1 min after the addition of PAAF in a dose-dependent manner. Fractionation of PAAF revealed only one fraction (molecular weight >/= 5 x 10(4)) possessed both [Ca(2+)](i) elevation activity and cytotoxic activity. Neither 8-(N,N-diethyl-amino) octyl-3,4,5-trimethoxybenzoate (TMB-8) nor thapsigargin inhibited the PAAF-evoked [Ca(2+)](i) elevation. Chelation of extracellular Ca(2+) by ethylene glycol bis-(beta-aminoethyl ether) N,N,N',N'-tetraacetic acid (EGTA) prevented the elevation of [Ca(2+)](i), but verapamil did not prevent it. Platelet-activating factor antagonist (TCV-309) blocked the PAAF-elicited [Ca(2+)](i) elevation. Pancreatitis-associated serum also increased hepatocyte [Ca(2+)](i). Moreover, PAAF increased [Ca(2+)](i) on Madin-Darby canine kidney cells in a dose-dependent manner. CONCLUSIONS: These results suggest that the dramatic elevation of hepatocyte [Ca(2+)](i) due to PAAF may be closely related to the hepatocellular injury in severe acute pancreatitis and that platelet-activating factor may play a pivotal role in increasing hepatocyte [Ca(2+)](i). Elevation of [Ca(2+)](i) in various cells may be involved in the mechanism of multiple organ failure in this disease.

Acute Disease↗

Flat-elevated and depressed, subtypes of flat early colorectal cancers, should be distinguished by their pathological features.

Flat-type colorectal tumors have are being detected with increasing frequency. It has become clear that these flat lesions contain two subtypes; flat-elevated and depressed lesions. However, their clinicopathological features and roles in colorectal carcinogenesis remain obscure. We classified colorectal adenomas and submucosal invasive cancers into three types: polypoid, flat-elevated, and depressed types. A clinicopathological study of 2505 colorectal tumors (2407 adenomas, 98 submucosal invasive cancers) was then performed. Furthermore, 64 tumors (25 adenomas with high-grade dysplasia, 39 submucosal invasive cancers) from which DNA was extracted were examined for K-ras gene mutation. The percentages of each configuration in the resected materials were 62.0%, 36.4%, and 1.6% of the polypoid, flat-elevated, and depressed types, respectively. The rate of submucosal invasive cancer in the depressed type was always high regardless of size. In the polypoid and flat-elevated types, lesions of larger size showed higher rates of invasion. Analysis of submucosal invasive cancers revealed no adenomatous components in any of the depressed-type lesions; in the polypoid and flat-elevated types the frequencies of cancer with adenomatous components were 83.6% and 77.8%, respectively. The flat-elevated type was more frequently located (77.8%) in the proximal colon than the other types (polypoid type 16.4%, depressed type 25.0%). The incidence of K-ras gene mutation was 47.2%, 18.2%, and 0% in the polypoid, flat-elevated, and depressed types, respectively. These findings suggest that the flat-elevated and depressed types are similar in that they are both morphologically flat and have infrequent incidences of K-ras gene mutation, but these two lesions differ in their pathological features. Especially, depressed type lesions have a tendency to invade the submucosal layer even when they are small. Therefore one should always be aware of this type of lesion during colonoscopic examination.

Adenoma↗

Retrograde holodiastolic flow in the abdominal aorta detected by pulsed Doppler echocardiography in patients with Kawasaki disease.

UNLABELLED: Retrograde holodiastolic flow in the abdominal aorta (retrograde flow) detected by pulsed Doppler echocardiography is usually noted in patients with aortic regurgitation or patent ductus arteriosus. Similar abnormal flow often is present in patients with acute phase Kawasaki Disease (KD). In 21 patients with acute phase KD, 15 had a retrograde flow. Retrograde flow was recognised in only 3 of patients with acute infection (n = 31) and in no healthy controls (n = 10). The ratio of the time velocity integral for diastolic retrograde flow to that for antegrade flow (regurgitant fraction) was significantly greater in patients with KD (median value 23%) than in patients with acute infection (1%) or healthy individuals (1%) (P < 0.001 for both). Four patients with coronary arterial involvement (one with an aneurysm and three with transient dilation of the coronary arteries) had a greater regurgitant fraction than the 17 patients without coronary arterial involvement (median values: 31% versus 18%, P < 0.05). The C-reactive protein was increased for a longer period of time in patients with KD with a greater regurgitant fraction (P < 0.01). Plasma nitric oxide (NO) metabolite concentrations were significantly greater in patients with KD than in those with acute infection or in healthy controls (P < 0.001 for both). There was a positive correlation between plasma NO metabolite concentrations and the regurgitant fraction in patients with KD (r = 0.69). CONCLUSION: Retrograde flow in the abdominal aorta is increased in patients with Kawasaki disease. Further studies are needed to clarify the causal relationship between the abnormal flow and the overproduction of nitric oxide.

Aorta, Abdominal↗

Macrocystic serous cystadenoma of the pancreas.

We report a 47-year-old woman with macrocystic serous cystadenoma of the pancreas. She had no past history of abdominal surgery, instrumentation, or trauma. Ultrasonography and computed tomography revealed a unilocular cyst in the body of the pancreas. On magnetic resonance imaging, the cyst showed heterogeneous signal intensity on T1-weighted images, and was homogeneously hyperintense and oligolocular is on T2-weighted images. A preoperative diagnosis of mucinous cystic neoplasm of the pancreas was made, and distal pancreatectomy was performed. The resected oligolocular cyst was 5.0 x 4.5 x 3.0 cm and was lined with a single layer of cuboidal epithelium similar to that seen in microcystic serous cystadenomas. Abundant glycogen was demonstrated within the epithelial cells, as assessed by periodic acid-Schiff (PAS) staining with and without diastase digestion. The cyst exhibited a gross appearance distinct from that of typical microcystic adenomas, resulting in diagnostic difficulties for the radiologists and surgeon involved in the patient's care.

Cystadenoma, Serous↗

Effects of sevoflurane and isoflurane on the ratio of cerebral blood flow/metabolic rate for oxygen in neurosurgery.

PURPOSE: To examine the changes in cerebral blood flow (CBF) equivalent (CBF divided by cerebral metabolic rate for oxygen) during craniotomy under isoflurane and sevoflurane anesthesia in patients with intracranial disorders. METHODS: In 16 neurosurgical patients (8 anesthetized with isoflurane and 8 with sevolflurane), the CBF equivalent was measured while the end-tidal concentration of the selected volatile anesthetic was maintained at 0.5 and 1.0 minimum alveolar concentration (MAC) before surgery, and then 1.0 MAC during surgery, which lasted more than 4 hr. RESULTS: There was no significant difference in CBF equivalent at 0.5 MAC between isoflurane (20 +/- 4ml blood.ml oxygen) groups. With increasing anesthetic depth from 0.5 to 1.0 MAC, the CBF equivalent significantly (P<0.5) increased in both groups (22 +/- 7 and 21 +/- 5, respectively). At 1.0 MAC during operation, the CBF equivalent with both anesthetics was maintained with minimal fluctuation for 4h. There were no significant differences in the average value of the CBF equivalent during a 4-h period at 1.0 MAC between the isoflurane (23 +/- 5) and the sevoflurane (20 +/- 4) groups. CONCLUSION: Deepening anesthesia from 0.5 to 1.0 MAC was maintained with no difference between the two agents during 4h of neurosurgery.

Journal Article↗

Appendiceal intussusception induced by tubulovillous adenoma with carcinoma in situ: report of a case.

Appendiceal intussusception is an uncommon pathologic condition; however, villous adenoma of the appendix is a distinctly rare entity. We report herein a case of appendiceal intussusception induced by tubulovillous adenoma with carcinoma in situ. A 67-year-old man was admitted to our hospital with a 1-year history of lower abdominal pain for investigation. Barium enema showed a filling defect with an irregular surface in the cecum, and colonoscopy revealed a cecal tumor with a granular surface. Pathological examination of biopsy samples revealed tubulovillous adenoma with well-differentiated adenocarcinoma, and a diagnosis of cecal cancer in tubulovillous adenoma was made. Surgery was performed and the resected specimen was found to contain a tumor arising from the appendix. The tumor was 5.5 x 4.5 cm in size in the cecal cavity, and the appendix had invaginated into the cecum at its base. The cut surface of the appendix showed the villous tumor filling the appendiceal lumen and projecting into the cecal cavity. Microscopic examination revealed well-differentiated adenocarcinoma in tubulovillous adenoma. To the best of our knowledge, this is the first report of appendiceal intussusception caused by tubulovillous adenoma with carcinoma of the appendix.

Adenocarcinoma↗

Gene expression profile in prion protein-deficient fibroblasts in culture.

To investigate the physiological function of the cellular isoform of prion protein (PrP(C)), the gene expression profile was studied by analyzing a cDNA expression array containing 597 clones of various functional classes in two distinct skin fibroblast cell lines designated SFK and SFH, established from PrP-deficient (PrP(-)(/-)) mice and PrP(+/+) mice, respectively. The cells were incubated in the culture medium with or without inclusion of basic fibroblast growth factor (bFGF). When SFK cells were compared with SFH cells in untreated conditions, the expression of 15 genes, including those essential for cell proliferation and adhesion, was reduced, whereas the expression of 27 genes, including those involved in the insulin-like growth factor-I (IGF-I) signaling pathway, was elevated. Northern blot analysis verified a significant down-regulation of the receptor tyrosine kinase substrate Eps8, cyclin D1, and CD44 mRNAs, and a substantial up-regulation of phosphatidylinositol 3-kinase p85, IGF-I, and serine protease inhibitor-2.2 mRNAs in SFK cells. The patterns of induction or reduction of gene expression after exposure to bFGF showed considerable overlap between both cell types. Furthermore, both Eps8 and CD44 mRNA levels were reduced greatly in the brain tissues of the cerebrum isolated from the PrP(-)(/-) mice. These results indicate that the disruption of the PrP gene resulted in an aberrant regulation of a battery of genes important for cell proliferation, differentiation, and survival, including those located in the Ras and Rac signaling pathways.

Animals↗