Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P05231 (interleukin-6)
23,907 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A case of Castleman's disease in a patient with type I neurofibromatosis and pheochromocytoma is reported. The association of pheochromocytoma and neurofibromatosis is well documented, but uncommon. Castleman's disease has not been previously documented in a patient with neurofibromatosis or pheochromocytoma and may represent a previously unrecognized association of this disease. Castleman's disease is an interleukin-6 (IL-6) mediated B-cell proliferation. We postulate a relationship between pheochromocytoma IL-6 secretion and Castleman's disease. The relevant literature relating to this unusual case is reviewed.
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PMID:Castleman's disease in a 44-year-old male with neurofibromatosis and pheochromocytoma. 947 39

Interleukin-6 (IL-6) on target cells binds to the specific IL-6 receptor (IL-6R) and subsequently induces homodimerization of the signal-transducing protein gp130. Cells which express gp130 but no IL-6R and which therefore do not respond to IL-6 can be stimulated by the complex of IL-6 and soluble IL-6R (slL-6R). Here we show that on rat pheochromocytoma cells (PC12), the combination of IL-6 and slL-6R but not IL-6 alone induces expression of c-fos, GAP-43 and neuron-specific enolase followed by neuron-specific differentiation and formation of a neuronal network. The differentiation was dose-and time-dependent and followed the same kinetics as nerve-growth factor (NGF)-induced differentiation. The responses of PC12 cells to IL-6/sIL-6R and NGF were additive, suggesting independent signaling pathways. We demonstrate that activation of gp130 generates a neuronal differentiation signal that is equivalent to and independent of trk/NGF receptor tyrosine kinase. Interestingly, the failure of IL-6 to induce differentiation of PC12 cells is not due to lack of surface expression of IL-6R as IL-6 alone triggered expression of GAP-43 mRNA and protein. We hypothesize that PC12 cells express more gp130 than IL-6R and that the extent of activated gp130 molecules determines the quality of the response.
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PMID:Activation of gp130 by IL-6/soluble IL-6 receptor induces neuronal differentiation. 951 81

A 31-y-old black man with neurofibromatosis, alcoholism and hypertension was admitted because of abdominal pain, hematemesis and cough. In the hospital he had prolonged fever and developed a multiorgan crisis. Despite thorough investigation, no infectious cause for fever was found. Urinary catecholamines and metabolites were markedly elevated. Computerized tomography revealed a mass abutting the left kidney. A diagnosis of pheochromocytoma was made, and as soon as treatment with phenoxybenzamine and propranolol was begun, the fever resolved. Serum interleukin-6 (IL-6) concentration was initially elevated, decreased after the start of adrenergic blockade, and gradually fell to an undetectable level after surgery. These observations suggest that interleukin-6 might have been causally related to the patient's fever and possibly the multiorgan crisis.
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PMID:Interleukin-6 in the fever and multiorgan crisis of pheochromocytoma. 957 53

The coexistence of pheochromocytoma and primary adrenal Cushing's syndrome of the same adrenal gland has rarely been reported. We describe here the case of a female patient presenting with mild Cushing's stigmata, hypertension and diabetes mellitus in whom we diagnosed a pheochromocytoma of the left adrenal gland with coexisting non-ACTH-dependent cortisol hypersecretion. While hormonal work-up was still in progress, the patient became pregnant and wanted to carry her pregnancy to full-term. A laparoscopic adrenalectomy in the 17th week of gestation was decided upon and the patient accordingly prepared for surgery by pre-treatment with phenoxybenzamine. Successful surgery--the first ever reported laparoscopic resection of a pheochromocytoma in pregnancy--without perioperative complications was performed under general anesthesia, with the patient receiving peri- and post-operative hydrocortisone substitution. Pathohistological examination revealed a pheochromocytoma with positive immunostaining for interleukin-6 (IL-6) and negative immunostaining for ACTH, vasoactive intestinal polypeptide (VIP) and cytochrome P450, and with no signs of malignancy. A paracrine stimulation of the ipsilateral adrenal cortex by IL-6 produced by the pheochromocytoma, leading to cortical hyperplasia and subclinical Cushing's syndrome, is suggested by the positive immunostaining for IL-6 and the MRI findings. Post-operatively, secondary adrenal insufficiency ensued, necessitating continuing hydrocortisone replacement over 12 months. Hypertension resolved after surgery, and diabetes after the uncomplicated vaginal delivery at term.
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PMID:Pheochromocytoma and sub-clinical Cushing's syndrome during pregnancy: diagnosis, medical pre-treatment and cure by laparoscopic unilateral adrenalectomy. 1047 54

Human herpes virus-8 (HHV8) encodes a cytokine named viral interleukin-6 (vIL-6) that shares 25% amino-acid identity with its human homologue. Human IL-6 is known to be a growth and differentiation factor of lymphatic cells and plays a potential role in the pathophysiology of various lymphoproliferative diseases. vIL-6 is expressed in HHV8-associated-diseases including Kaposi's sarcoma, Body-cavity-based-lymphoma and Castleman's disease, suggesting a pathogenetic involvement in the malignant growth of B-cell associated diseases and other malignant tumours. We expressed vIL-6 in Escherichia coli as a fusion protein with recombinant periplasmic maltose binding protein. After cleavage from the maltose binding protein moiety and purification, vIL-6 was shown to be correctly folded using circular dichroism spectroscopy. A rabbit antiserum was raised against the recombinant vIL-6 protein. vIL-6 turned out to be active on cells that expressed gp130 but no IL-6 receptor (IL-6-R) suggesting that, in contrast to human IL-6, vIL-6 stimulated gp130 directly. Accordingly, vIL-6 activity could be inhibited by a soluble gp130 Fc Fusion protein. vIL-6 was shown to induce neuronal differentiation of rat pheochromocytoma cells and to stimulate colony formation of human hematopoietic progenitor cells. Thus, vIL-6 exhibits biologic activity that has only been observed for the IL-6/soluble IL-6-R complex but not for IL-6 alone. These properties are important for the evaluation of the pathophysiological potential of vIL-6.
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PMID:Human herpes virus 8 interleukin-6 homologue triggers gp130 on neuronal and hematopoietic cells. 1084 77

Phospholipase C (PLC)-gamma1 plays a pivotal role in the signal transduction pathway mediated by growth factors. In this study, we found that neurite outgrowth of pheochromocytoma (PC12) cells was significantly induced by interleukin-6 (IL-6). Stimulation of PC12 cells with IL-6 led to tyrosine phosphorylation of PLC-gamma1 in a dose- and time-dependent manner. IL-6 stimulation also increased the hydrolysis of phosphatidylinositol 4,5-bisphosphate. Accumulation of total inositol phosphate as well as tyrosine phosphorylation of PLC-gamma1 was inhibited by the pretreatment of protein kinase inhibitors such as genistein and staurosporine. These results suggest that PLC-gamma1 may be involved in the signal transduction pathway of IL-6-induced PC12 cell differentiation.
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PMID:Interleukin-6-induced tyrosine phosphorylation of phospholipase C-gamma1 in PC12 cells. 1098 47

Glial cells release neurotrophic factors that maintain neurons functionally. Previously, we have shown that the scabronines isolated from Sarcodon scabrosus enhanced the secretion of neurotrophic factors from 1321N1 human astrocytoma cells. In the present study, we examined the mechanism of newly synthesized scabronine G-methylester (ME)-induced secretion of neurotrophic factors from 1321N1 cells. The dramatic neuronal differentiation of rat pheochromocytoma cells (PC-12) was observed by scabronine G-ME-conditioned medium of 1321N1 cells. Scabronine G-ME increased the secretion of nerve growth factor (NGF) and interleukin-6 (IL-6) from 1321N1 cells with the enhancement of their mRNA expressions. Scabronine G-ME concentration-dependently inhibited the carbachol-induced inositol phosphate accumulation in 1321N1 cells, which was reversed by GF109203X, an inhibitor of protein kinase C (PKC) isoforms. Furthermore, GF109203X inhibited the scabronine G-ME-induced mRNA expressions of both NGF and IL-6 and the differentiation of PC-12 cells, showing that scabronine G-ME activated PKC. Although scabronine G-ME enhanced activities of neither conventional nor novel types of PKCs, it translocated PKC-zeta to membranes in intact cells and cell-free condition. Furthermore, recombinant PKC-zeta activity was also increased by scabronine G-ME, suggesting the involvement of PKC-zeta in the effect of scabronine G-ME. Concerning the downstream effectors of the PKC-zeta, scabronine G-ME translocated nuclear factor-kappaB to nucleus, and enhanced its transcriptional activity. In addition, scabronine G-ME caused the degradation of inhibitor of nuclear factor-kappaB concentration-dependently, which was inhibited by GF109203X. These results suggest that scabronine G-ME potentially enhances the secretion of neurotrophic factors from 1321N1 cells mediated via the activation of PKC-zeta.
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PMID:Scabronine G-methylester enhances secretion of neurotrophic factors mediated by an activation of protein kinase C-zeta. 1130 14

Nerve growth factor (NGF) is required for the development of sympathetic neurons and subsets of sensory neurons. Our current knowledge on the molecular mechanisms underlying the biological functions of NGF is in part based on the studies with PC12 rat pheochromocytoma cells, which differentiate into sympathetic neuron-like cells upon NGF treatment. Here we report that the expression of leukemia inhibitory factor receptor (LIFR), one of the signaling molecules shared by several neuropoietic cytokines of the interleukin-6 family, is specifically up-regulated in PC12 cells following treatment with NGF. Attenuation of LIFR signaling through stable transfection of antisense- or dominant negative-LIFR constructs enhances NGF-induced neurite extension in PC12 cells. On the contrary, overexpression of LIFR retards the growth of neurites. More importantly, whereas NGF-induced Rac1 activity is enhanced in antisense-LIFR and dominant negative-LIFR expressing PC12 cells, it is reduced in LIFR expressing PC12 cells. Following combined treatment with NGF and ciliary neurotrophic factor, sympathetic neurons exhibit attenuated neurite growth and branching. On the other hand, in sympathetic neurons lacking LIFR, neurite growth and branching is enhanced when compared with wild type controls. Taken together, our findings demonstrate that LIFR expression can be specifically induced by NGF and, besides its known function in cell survival and phenotype development, activated LIFR signaling can exert negative regulatory effects on neurite extension and branching of sympathetic neurons.
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PMID:Leukemia inhibitory factor receptor signaling negatively modulates nerve growth factor-induced neurite outgrowth in PC12 cells and sympathetic neurons. 1287 77

Pheochromocytomas are tumors able to produce catecholamines and a variety of biologically active neuropeptides. We report the case of a 36-yr-old female patient with pheochromocytoma exhibiting headache, intermittent fever, thrombocytosis, and marked inflammatory signs. Nonsteroidal anti-inflammatory drugs were ineffective in lowering the body temperature, while a corticosteroid agent obtained excellent results. IL-6 was found elevated (20 pg/ml); it fell to 4.5 pg/ml 3 weeks after the adrenalectomy, in parallel to normalization of other laboratory data. The interleukin-6 (IL-6) over-production can either be ascribed directly to the tumor (as confirmed by immunohistochemistry) or indirectly accounted for by tumoral production, as a consequence of the high levels of circulating norepinephrine. To our knowledge, our paper represents the 6th case report of IL-6 secreting pheochromocytoma associated with clinical markers of inflammatory response.
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PMID:Interleukin-6 producing pheochromocytoma presenting with acute inflammatory syndrome. 1290 74

Adrenomedullin (AM) is a vasodilator peptide that originally isolated from pheochromocytoma tissue. However, the mRNA is expressed in the normal adrenal gland, heart, kidney and blood vessels. The human AM gene is located in the short arm of chromosome 11 and is composed of 4 exons. There are 2 single nucleotide polymorphisms in introns 1 and 3, and the 3'-end of the AM gene is flanked by a microsatellite marker of cytosine-adenine repeats that is associated with an increased risk of developing hypertension and diabetic nephropathy. AM gene expression is promoted by various stimuli, including inflammation, hypoxia, oxidative stress, mechanical stress and activation of the renin-angiotensin and sympathetic nervous systems. The AM gene promoter region possessed binding site for several transcription factors, including nuclear factor for interleukin-6 expression (NF-IL6) and activator protein 2 (AP-2). Further, plasma AM levels are increased in patients with various cardiovascular diseases, including hypertension, heart failure and renal failure. These findings suggest that AM plays a role in the development of or response to cardiovascular disease. Indeed, experimental and clinical studies have demonstrated that systemic infusion of AM may have a therapeutic effect on myocardial infarction, heart failure and renal failure. Further, vasopeptidase inhibitors which augment the bioactivity of endogenous AM may benefit patients with hypertension and arteriosclerosis. Finally, the angiogenic and cytoprotective properties of AM may have utility in revascularization and infarcted myocardium and ischemic limbs. Because of the potential clinical benefits of AM, indications for use and optimal dosing strategies should be established.
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PMID:Pathophysiologic and therapeutic implications of adrenomedullin in cardiovascular disorders. 1661 59


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