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Biomedical subjects

F Marumo

Publications and source records attributed to F Marumo.

At least 73 records · Page 4Linked to original sources

Thymic hyperplasia as a source of ectopic ACTH production.

A 26 year-old man with suspected Cushing's disease underwent transsphenoidal exploration of the pituitary without any evidence of microadenoma or hyperplasia. Progressive hypercortisolism necessitated bilateral adrenalectomy. Postoperatively, skin pigmentation gradually developed with a marked elevation of plasma ACTH levels, and CT scanning uncovered a thymic mass. Following removal of the thymic mass, skin pigmentation disappeared and plasma ACTH levels fell to normal. The excised mass was found to be a benign thymic hyperplasia without epithelial or carcinoid tumor cells. However, gel chromatography showed that the thymic tissue extract contained high ACTH content comparable to that of ectopic ACTH-producing tumors with a major component corresponding to ACTH(1-39). Northern blot analysis and in situ hybridization revealed the expression of proopiomelanocortin transcripts in lymphocytes of thymic hyperplasia. This report suggests that lymphocytes in thymic hyperplasia are the most likely site of deregulated ACTH expression causing ectopic ACTH syndrome.

ACTH Syndrome, Ectopic↗

Immunoreactive adrenomedullin (AM) concentration in maternal plasma during human pregnancy and AM expression in placenta.

Adrenomedullin (AM) is a novel vasorelaxant peptide, isolated from human pheochromocytoma. Although AM may be involved in the regulation of the cardiovascular system, a number of other mechanisms are also involved. The present study was undertaken to confirm the presence of AM in human maternal circulation and in placental function during pregnancy. Immunoreactive (ir) AM concentrations in maternal plasma were 3.4+/-0.7fmol/ml (mean+/-s.e. m.) in the first trimester, 3.3+/-1.1fmol/ml in the second trimester, 7.3+/-2.8fmol/ml in the third trimester, 4.1+/-1.9fmol/ml in early puerperium and 3.0+/-0.4fmol/ml in non-pregnant periods; the concentration in the third trimester was significantly greater than those in other periods. Plasma concentrations of estradiol (E(2)), progesterone, human placental lactogen (hPL) and human chorionic gonadotropin (hCG) were also measured, using RIA kits. Significant correlations have been demonstrated between the concentrations of irAM and those of E(2), progesterone and hPL. We therefore examined the expression of AM within the placental tissues using immunohistochemistry and northern blot analysis in order to demonstrate a correlation between the presence of AM in the placenta and maternal plasma. Using immunohistochemistry, we detected AM in the amnion at term and the expression of AM mRNA in human placental tissues using cloned human (h) AM complementary DNA as a probe. This study demonstrates the immunoreactivity of human hAM in maternal plasma during pregnancy, and suggests that hAM in maternal plasma is generated partly from placental tissue.

Adrenomedullin↗

Apoptotic cell death in arrhythmogenic right ventricular cardiomyopathy: a comparative study with idiopathic sustained ventricular tachycardia.

Arrhythmogenic right ventricular cardiomyopathy (ARVC) is a specific heart muscle disease of unknown etiology characterized by fatty and fibrofatty replacement of the right ventricular myocardium. It often manifests life-threatened ventricular arrhythmias. Previous studies have hypothesized that myocyte apoptosis contributes to the myocyte cell loss and fatty change in ARVC and may be induced by recurrent ventricular tachycardia (VT). We examined whether these progressive pathological changes result from apoptotic cell death in both autopsied and biopsied right ventricular myocardium from 35 patients with ARVC by using in situ terminal deoxynucleotidyl transferase assay (TUNEL) and agarose gel electrophoresis. We also studied the biopsied myocardium from 30 patients with idiopathic sustained VT whose origin was the outflow tract of the right ventricle. TUNEL-positive cells indicating DNA fragments were observed in some cardiomyocytes and fibroblasts in ARVC, but the numbers of TUNEL-positive myocytes were very low in idiopathic VT. DNA laddering was confirmed in two autopsied cases in ARVC, but not in a non-cardiac case who died. These results suggest that at least some cardiomyocytes and fibroblasts are subjected to apoptosis in ARVC, leading to the loss of myocardium with characteristic pathological changes and subsequently progressive cardiomyopathy. Furthermore, the apoptotic process may not result from myocardial ischemia due to repetitive VT.

Adolescent↗

Intracellular signaling of angiotensin II-induced p70 S6 kinase phosphorylation at Ser(411) in vascular smooth muscle cells. Possible requirement of epidermal growth factor receptor, Ras, extracellular signal-regulated kinase, and Akt.

Activation of p70 S6 kinase (p70(S6K)) by growth factors requires multiple signal inputs involving phosphoinositide 3-kinase (PI3K), its effector Akt, and an unidentified kinase that phosphorylates Ser/Thr residues (Ser(411), Ser(418), Ser(424), and Thr(421)) clustered at its autoinhibitory domain. However, the mechanism by which G protein-coupled receptors activate p70(S6K) remains largely uncertain. By using vascular smooth muscle cells in which we have demonstrated Ras/extracellular signal-regulated kinase (ERK) activation through Ca(2+)-dependent, epidermal growth factor (EGF) receptor transactivation by G(q)-coupled angiotensin II (Ang II) receptor, we present a unique cross-talk required for Ser(411) phosphorylation of p70(S6K) by Ang II. Both p70(S6K) Ser(411) and Akt Ser(473) phosphorylation by Ang II appear to involve EGF receptor transactivation and were inhibited by dominant-negative Ras, whereas the phosphorylation of p70(S6K) and ERK but not Akt was sensitive to the MEK inhibitor. By contrast, the phosphorylation of p70(S6K) and Akt but not ERK was sensitive to PI3K inhibitors. Similar inhibitory pattern on these phosphorylation sites by EGF but not insulin was observed. Taken together with the inhibition of Ang II-induced p70(S6K) activation by dominant-negative Ras and the MEK inhibitor, we conclude that Ang II-initiated activation of p70(S6K) requires both ERK cascade and PI3K/Akt cascade that bifurcate at the point of EGF receptor-dependent Ras activation.

Angiotensin II↗

Transmembrane helix 5 is critical for the high water permeability of aquaporin.

Aquaporin-2 (AQP2), a vasopressin-regulated water channel, plays a major role in urinary concentration. AQP2 and the major intrinsic protein (MIP) of lens fiber are highly homologous (58% amino acid identity) and share a topology of six transmembrane helices connected by five loops (loops A-E). Despite the similarities of these proteins, however, the water channel activity of AQP2 is much higher than that of MIP. To determine the site responsible for this gain of activity in AQP2, several parts of MIP were replaced with the corresponding parts of AQP2. When expressed in Xenopus oocytes, the osmotic water permeability (P(f)) of MIP and AQP2 was 48 and 245 x 10(-)(4) cm/s, respectively. Substitutions in loops B-D failed to increase P(f), whereas substitution of loop E significantly increased P(f) 1.5-fold. A similar increase in P(f) was observed with the substitution of the front half of loop E. P(f) measurements taken in a yeast vesicle expression system also confirmed that loop E had a complementary effect, whereas loops B-D did not. However, P(f) values of the loop E chimeras were only approximately 30% of that of AQP2. Simultaneous exchanges of loop E and a distal half of transmembrane helix 5 just proximal to loop E increased P(f) to the level of that of AQP2. Replacement of helix 5 alone stimulated P(f) 2.7-fold. Conversely, P(f) was decreased by 73% when helix 5 of AQP2 was replaced with that of MIP. Moreover, P(f) was stimulated 2.6- and 3.3-fold after helix 5 of AQP1 and AQP4 was spliced into MIP, respectively. Our findings suggested that the distal half of helix 5 is necessary for maximum water channel activity in AQP. We speculate that this portion contributes to the formation of the aqueous pore and the determination of the flux rate.

Animals↗

Time-related changes in full-length hepatitis C virus sequences and hepatitis activity.

The activity of hepatitis varies in chronic hepatitis C virus (HCV) infection. Some patients show persistently normal serum alanine aminotransferase (ALT) values, whereas the others show high-ALT values and progress to liver cirrhosis or hepatocellular carcinoma. However, virological mechanisms causing hepatitis have not fully been elucidated. We analyzed serial changes in full-length HCV sequences in 10 patients with various profiles of hepatitis activity. In the nonstructural 5A (NS5A) and NS5B, the rate of amino acid changes, as well as the proportion of nonsilent ones, was low in patients with normal ALT values compared with those with abnormal ALT (for the rate of amino acid changes, 0 x 10(-3) vs 3.19 x 10(-3) changes/site/year (P = 0.037) in NS5A and 0 x 10(-3) vs 1.22 x 10(-3) changes/site/year (P = 0.023) for NS5B, for the proportion of nonsilent changes, 4 vs 22% (P = 0.017) in NS5A and 0 vs 16% (P = 0. 039) in NS5B). Also, the flare-up of hepatitis coincided with higher nucleotide/amino acid substitution rates in NS5B. In conclusion, the genomic structures of the NS5A and NS5B regions may correlate with hepatitis activity in chronic hepatitis C.

Adult↗

Structural analysis of the titin gene in hypertrophic cardiomyopathy: identification of a novel disease gene.

Hypertrophic cardiomyopathy (HCM) is characterized by ventricular hypertrophy accompanied by myofibrillar disarrays. Molecular genetic analyses have revealed that mutations in 8 different genes cause HCM. Mutations in these disease genes, however, could be found in about half of HCM patients, suggesting that there are other unknown disease gene(s). Because the known disease genes encode sarcomeric proteins expressed in the cardiac muscle, we searched for a disease-associated mutation in the titin gene in 82 HCM patients who had no mutation in the known disease genes. A G to T transversion in codon 740, from CGC to CTC, replacing Arginine with Leucine was found in a patient. This mutation was not found in more than 500 normal chromosomes and increased the binding affinity of titin to alpha-actitin in the yeast two-hybrid assay. These observations suggest that the titin mutation may cause HCM in this patient via altered affinity to alpha-actinin.

Actinin↗

Isolation and characterization of kidney-specific CLC-K2 chloride channel gene promoter.

CLC-K1 and CLC-K2 are highly homologous kidney-specific chloride channels, but they are expressed in the different nephron segments. To understand the molecular mechanisms of kidney-specific and nephron-segment-specific expression of CLC-K channel genes, the rat ClC-K2 gene promoter was cloned and compared with that of CLC-K1. In the 1.5-kb pair 5'-flanking region of the CLC-K2 gene, no TATA box was identified around the transcriptional start site, and the proximal region (-32 to -68) was characterized by a GA-rich motif that had a significant sequence similarity to that of the previously isolated CLC-K1 gene promoter. In contrast, the distal portion did not have significant sequence similarity to that of CLC-K1. Reporter gene assay and gel-retardation analysis revealed that the GA-rich motif and the binding of a specific protein(s) to this element were indispensable for the basal promoter activity of the CLC-K2 gene. These results suggest that the GA-rich element may have an important role in the promoter activities of the kidney-specific CLC-K1 and -K2 genes, but that the GA-element alone is not sufficient for the strict regulation of nephron-segment-specific expression of CLC-K1 and CLC-K2 genes.

Animals↗

Inhibitory effects of vesnarinone in the progression of myocardial damage in experimental autoimmune myocarditis in rats.

OBJECTIVES: Vesnarinone, a positive inotropic and immunomodulatory agent, diminishes nitric oxide (NO) levels by suppressing the induction of inducible NO synthase (iNOS) expressed in cytokine-stimulated macrophages and cardiomyocytes. We examined whether vesnarinone exerts inhibitory effects on the progression of myocardial damage in experimental autoimmune myocarditis in rats through suppression of iNOS. METHODS: Myocarditis was induced in 30 Lewis rats by injection of porcine cardiac myosin and vesnarinone was orally administered to 20 of the 30 rats. On day 21 after immunization (the climax of inflammation), the hemodynamics were examined and the severity of myocarditis was evaluated by determining the area ratio (%) [affected/entire area] of myocardial lesions in histological sections. Levels of serum CK-MB, NOx (NO2(-)+NO3-), TNF-alpha and IL-1 beta, and cyclic GMP, iNOS mRNA, TNF-alpha and IL-1 beta in heart tissues were determined. Expression of iNOS and TNF-alpha protein were examined by immunohistochemical methods. RESULTS: Histopathological examination revealed extensive myocardial destruction and massive infiltration of inflammatory cells in the vesnarinone-untreated rats. The area ratio of the lesions in the treated rats was significantly lower than that in the untreated ones. Levels of CK-MB, NOx, cyclic GMP, cytokines and iNOS mRNA were significantly lower in the vesnarinone-treated rats. Infiltrating macrophages and cardiomyocytes in the untreated rats showed much higher levels of expression of iNOS and TNF-alpha than those in the vesnarinone-treated rats. CONCLUSIONS: Vesnarinone may prove to be useful in the treatment of myocarditis by attenuating NO production through suppression of iNOS induced by cytokines.

Analysis of Variance↗

Nitric oxide induces apoptotic death of cardiomyocytes via a cyclic-GMP-dependent pathway.

Recently, we have reported that excess amounts of nitric oxide (NO) produced by inducible NO synthase are involved in the development of myocardial damage in rats with induced myocarditis. However, there remain many problems to be solved concerning its mechanism of action. In this study, we examined whether NO induces apoptotic cell death in cardiomyocytes. Cultured neonatal rat cardiomyocytes were exposed to S-nitroso-N-acetylpenicillamine (SNAP) and (+/-)-E-ethyl-2-[(E)-hydroxyimino]-5-nitro-3-hexeneamine (NOR 3), as NO donors, or 8-bromo-cyclic GMP (cGMP), an analog of cGMP which functions as a second messenger in cells stimulated by NO. DNA fragmentation was confirmed by electron microscopy, by the terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end labeling (TUNEL) method, and by agarose gel electrophoresis. Exogenously supplied SNAP or NOR 3 induced cardiomyocyte apoptosis in a dose- and time-dependent manner. Cardiomyocytes exposed to SNAP displayed typical features of apoptosis as demonstrated by electron microscopy. Treatment of the cells with 8-bromo-cGMP also induced apoptosis. In cardiomyocytes, SNAP-induced apoptosis was completely blocked by a PKG inhibitor (KT5823) and by a soluble guanylate cyclase inhibitor (ODQ) and was suppressed by hemoglobin and was completely blocked by ZVAD-FMK, a caspase inhibitor. These results show that NO-mediated apoptosis of cardiomyocytes is cGMP dependent and that caspases are involved in this process.

Animals↗

Molecular cloning of CLC chloride channels in Oreochromis mossambicus and their functional complementation of yeast CLC gene mutant.

We have cloned two members of the CLC chloride channel family (OmCLC-3 and OmCLC-5) from gill cDNA libraries of the euryhaline tilapia Oreochromis mosammbicus. At the amino acid level, OmCLC-3 is 90.5% identical to rat CLC-3 and OmCLC-5 is 79.2% identical to rat CLC-5. Ribonuclease protection assay revealed that OmCLC-5 was mainly expressed in the gill, kidney, and intestine in both freshwater- (FW) and seawater- (SW) adapted tilapia. Although the mRNA of OmCLC-3 was broadly expressed in tissues of FW- and SW-adapted tilapia, the most intense signals were observed in the gill, kidney, intestine, and brain. Injection of OmCLC-3 and OmCLC-5 cRNAs into Xenopus oocytes did not elicit chloride currents, but these clones did functionally complement the gef1 phenotype of YPH250(gef), a yeast strain in which a single CLC channel (GEF1) has been disrupted by homologous recombination. These results clearly indicated that CLC channels closely related to the mammalian CLC-3, -4, and -5 subfamily exist also in tilapia and that OmCLC-3 and OmCLC-5 function as intracellular chloride channels.

Amino Acid Sequence↗

Mutations in nonstructural protein 5A gene and response to interferon in hepatitis C virus genotype 2 infection.

An association has been reported between mutations in the amino acid residues 2209-2248 of the nonstructural protein 5A (NS5A) gene (interferon-sensitivity determining region [ISDR]) and interferon efficacy in hepatitis C virus (HCV)-1b infection. This relationship was analyzed in chronic HCV-2 infection. Forty patients with HCV-2a and 35 with HCV-2b were treated with interferon alfa for 6 months with a total dose of 468 to 860 million units. Pretreatment NS5A sequences were determined by direct sequencing. A higher complete and sustained response rate was observed in HCV-2a than in HCV-2b (70% vs. 34%; P =.003). Serum HCV-RNA levels were lower in complete responders than nonresponders in HCV-2a (P =.049) and HCV-2b (P =. 02). The number of amino acid mutations was greater in complete responders than nonresponders in NS5A2193-2228 (the region corresponding to the ISDR of HCV-1b) alone (P =.049), or NS5A2163-2228 consisting of NS5A2193-2228 plus its upstream region (P =.02) in HCV-2a, but not in HCV-2b. A significant inverse correlation was observed between serum HCV-RNA levels and the number of amino acid mutations in NS5A2193-2228 (P =.003) or NS5A2163-2228 (P =.005) in HCV-2a. With multivariate analysis, the number of substitutions in NS5A was an independent predictor for complete response in HCV-2a (odds ratio: 6.4; P =.03). Interferon efficacy is associated with amino acid variations in the NS5A protein in HCV-2a infection.

Adult↗

Thermal preconditioning protects rat cardiac muscle cells from doxorubicin-induced apoptosis.

Doxorubicin (DOX=adriamycine), an effective chemotherapeutic agents for cancers, has severe cardiotoxicity. In the paresent study, we examined the protective effect of thermal preconditioning (TP) against apoptosis of rat cardiac muscle cells induced by DOX. Treatment with DOX (10 microM) for 24 hrs resulted in apoptosis of cardiac muscle cells, which was evaluated by examining "DNA ladder" formation and TUNEL staining. The number of TUNEL-positive cells was significantly decreased in cells subjected to TP by incubation at 42 degrees C for 30 min, 24 hrs prior to DOX-treatment. Antisense oligonucleotides of the heat shock protein (HSP) 70 blunted this effect. These results indicate that DOX-induced apoptosis in cardiac muscle cells is prevented by TP, at least in part, via a HSP70-mediated mechanism.

Animals↗

Overt nephrogenic diabetes insipidus in mice lacking the CLC-K1 chloride channel.

CLC-K1 is a kidney-specific chloride channel that mediates transepithelial chloride transport in the thin ascending limb of Henle's loop (tAL) in the inner medulla. Transport of NaCl in the tAL is thought to be a component of urinary concentration in a passive model of the countercurrent multiplication system, but there has been no direct evidence that CLC-K1 is involved in urine concentration. To analyse the physiological function of CLC-K1 in vivo, we generated mice lacking CLC-K1 by targeted gene disruption. Clcnk1-/- mice were physically normal appearance, but produced approximately five times more urine than Clcnk1+/- and Clcnk1+/+ mice. After 24 hours of water deprivation, Clcnk1-/- mice were severely dehydrated and lethargic, with a decrease of approximately 27% in body weight. Intraperitoneal injection of the V2 agonist 1-deamino-8-D-arginine vasopressin (dDAVP) induced a threefold increase in urine osmolarity in Clcnk1+/- and Clcnk1+/+ mice, whereas only a minimal increase was seen in Clcnk1-/- mice, indicating nephrogenic diabetes insipidus. After in vitro perfusion of the tAL, the lumen-to-bath chloride gradient did not produce a diffusion potential in Clcnk1-/- mice in contrast to Clcnk1+/+ and Clcnk1+/- mice. These results establish that CLC-K1 has a role in urine concentration, and that the countercurrent system in the inner medulla is involved in the generation and maintenance of hypertonic medullary interstitium.

Animals↗

Effects of missense mutations on rat aquaporin-2 in LLC-PK1 porcine kidney cells.

BACKGROUND: Mutations in the aquaporin-2 (AQP2) gene have been found in families with nephrogenic diabetes insipidus (NDI), but the pathophysiological mechanisms of how mutant AQP2 causes the disease are still not clear. METHODS: Wild-type (WT) AQP2 and four mutants-T126M, A147T, R187C, and S216P-were transiently expressed in LLC-PK1 cells. The osmotic water permeability of LLC-PK1 cells expressing AQP2 mutants was determined by stopped-flow light-scattering microphotometry. Cell surface expression, subcellular localization, and effects of vasopressin stimulation were examined by surface biotin labeling and confocal immunohistochemistry. RESULTS: The osmotic water permeability (Pf) of cells expressing WT increased significantly after vasopressin treatment, whereas the Pf of cells expressing T126M A147T, R187C, and S216P was not significantly different from that of the control even after vasopressin stimulation. Confocal immunohistochemistry demonstrated distribution of WT and A147T in early/recycling endosomal compartments and vasopressin-responsive translocation and surface expression. In contrast, stainings of T126M, R187C, and S216P were similar to that of Grp78, indicating that these mutants were misassembled and retarded in the endoplasmic reticulum. CONCLUSION: Our results indicated that the intracellular distribution and vasopressin-regulated trafficking of A147T is intact, in contrast to the other three mutants, of which both were impaired. Thus, it is conceivable that the disruption of the AQP2 channel function accounts for the pathogenesis of A147T NDI, whereas trafficking defects account for that of the other types, suggesting that the pathophysiology of AQP2-related NDI is heterogeneous.

Animals↗

Cell cycle inhibitors (p27Kip1 and p21CIP1) cause hypertrophy in LLC-PK1 cells.

BACKGROUND: Angiotensin II has been reported to induce renal tubular hypertrophy, but the mechanisms of this hypertrophy are not well known. We evaluated the roles of cyclin-dependent kinase (CDK) inhibitors in renal tubular hypertrophy. METHODS: To elucidate whether CDK inhibitors cause renal tubular hypertrophy, we produced adenovirus vectors containing coding sequences of the CDK inhibitors p27Kip1 (AxCAp27), p21CIP1 (AxCAp21), and p16INK4 (AxCAp16), and we investigated the effect of these gene transfers on epidermal growth factor (EGF)-induced proliferation in LLC-PK1 cells. We evaluated the cell cycle and hypertrophy by measurements of the [3H]-leucine and [3H]-thymidine incorporation, the protein:DNA ratio, flow cytometry, and CDK4 and CDK2 kinase assays. RESULTS: AxCAp27 and AxCAp21 caused significant increases in [3H]-leucine incorporation and the protein:DNA ratio but did not change the [3H]-thymidine incorporation. Conversely, AxCAp16 inhibited EGF-stimulated [3H]-thymidine incorporation but did not change the [3H]-leucine incorporation. AxCAp27, AxCAp21, and AxCAp16 all inhibited EGF-stimulated CDK4 kinase activity (to 15.6, 14.1, and 21.9% of control, respectively). Forward light-scatter analysis demonstrated that AxCAp27 and AxCAp21 increased the cell size but that AxCAp16 effected no change in cell size. CONCLUSION: These findings suggest that p27Kip1 and p21CIP1 may play an important role in hypertrophy of renal tubule cells by reducing pRb phosphorylation. On the other hand, p16INK4 was not found to cause hypertrophic changes in EGF-treated LLC-PK1 cells.

Adenoviridae↗

TGF-beta-activating kinase-1 inhibits cell cycle and expression of cyclin D1 and A in LLC-PK1 cells.

BACKGROUND: Transforming growth factor-beta (TGF-beta) is known to play an important role in the pathophysiology of renal tubular disease. Researchers have recently identified a novel mitogen-activated protein kinase kinase kinase (MAPKKK), TAK (TGF-beta activated kinase)1, which stimulates the MKK3/6-p38K pathway. The purpose of our study was to investigate the functional role of the TAK1-MKK3/6-p38K pathway and classical MAPK cascades in the progression of the cell cycle in renal tubular cells. METHODS: The constitutive active form and negative form of TAK1 (TAK1dN and TAK1K63W, respectively), and active and negative forms of the p42/44 MAPK-activator, MKK1 (S222E and S222A, respectively) were transfected to LLC-PK1 cells. Western blot analyses and promoter-luciferase assay of cyclins D1, D2, D3, E, and A were performed, and cell cycle progression was analyzed by FACS scan. RESULTS: TAK1dN stimulated MKK6 and p38K activity and inhibited the percentage of the S and G2/M phases. TAK1K63 W inhibited TGF-beta-stimulated MKK6 and p38K activity. Cyclin D1 and cyclin A protein levels and promoter activities were negatively regulated by TAK1dN. In contrast, overexpression of the active form of p42/44 MAPK-activator, MKK1, increased cyclin D1 and A promoter activity and protein levels. CONCLUSION: The growth-inhibitory effects of TGF-beta are at least partially mediated by the TAK1-MKK6-p38K pathway. Cyclin D1 and A promoter activity and cell cycle progression in renal tubular cells are negatively regulated by the TAK1-MKK6-p38K pathway and positively regulated by the MKK1-p42/44MAPK pathway.

Animals↗

Regulation of cyclin D1 expression and cell cycle progression by mitogen-activated protein kinase cascade.

Mitogen-activated protein kinases (MAPKs) have been shown to play an important role in transducing extracellular signals into cellular responses. The classic MAPK pathway is commonly activated by growth factors and has been shown to play a crucial role in cell proliferation. Transforming growth factor-beta (TGF-beta)-activating kinase-1 (TAK1) is a novel MAPK kinase kinase that is reported to stimulate the MKK6-p38K pathway. To elucidate the functional roles of the TAK1 pathway, we transfected its constitutive active form (TAKdN) and negative form (TAKK63W) to LLC-PK1 cells. TAKdN stimulated MKK6 phosphorylation and p38K activity and inhibited the percentages of the S and G2/M phases. TAKK63W, the constitutive negative form, reduced TGF-beta-stimulated MKK6 phosphorylation and p38K activity and increased the percentages of the S and G2/M phases. The cyclin D1 protein level is reduced by the TAK1 pathway. We also examined the effects of the TAK1 pathway on cyclin D1 promoter-luciferase assay. The overexpression of TAKdN or p38K inhibited cyclin D1 promoter activity. In contrast, overexpression of the active form of MKK1, the classic MAPK-activator, MKK1 increased cyclin D1 promoter activity and protein level, as well as the percentages of S and G2/M phases.

Animals↗