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Biomedical subjects

C Bizzarri

Publications and source records attributed to C Bizzarri.

At least 37 records · Page 2Linked to original sources

Prognostic implications of hyperglycaemia in paediatric head injury.

Fifty children with head injury were evaluated in an attempt to establish a correlation between post-traumatic hyperglycaemia and long-term outcome. In all the patients, the blood glucose level was measured on admission and on the days following the trauma (threshold of normal value set at 150 mg/dl). Hyperglycaemia was seen more frequently in children with severe head injury than in those with mild and moderate head injury. It was present in 87.5% of the patients with a Glasgow Coma Score (GCS) < or =8 (the average blood glucose level on admission was 237.8+/-92 mg/dl), in 60% of the patients with a GCS of 9-12 (178+/-78.7 mg/dl) and only in 25% of those with a GCS of 13-15 (131.5+/-39 mg/dl). A close correlation was also seen between the outcome and the blood glucose level. In fact, the blood glucose on admission was higher in the patients with a poor outcome, i.e. in those having a Glasgow Outcome Score (GOS) of 2 or 3 and in those who died (GOS 1), than in the patients with a good outcome (GOS of 4 or 5). Finally, hyperglycaemia persisted beyond the first 24 h after trauma in all the children who died or who survived with a poor outcome. Hyperglycaemia, and especially its persistence over time, appears to be an important negative prognostic factor in children with head injury.

Adolescent↗

Inhibitory activity of IL-1 receptor antagonist depends on the balance between binding capacity for IL-1 receptor type 1 and IL-1 receptor type II.

A series of mutants of human IL-1 receptor antagonist (IL-1ra) has been designed by comparison of IL-1ra and IL-1beta structures in order to increase receptor antagonist capacity. Upon in vitro and in vivo assay of IL-1 antagonism, the IL-1ra mutants DoB 0039 (N91-->R), DoB 0040 (T109-->A) and DoB 0041 (N91/T109-->R/A) could inhibit IL-1beta effects more efficiently than wild-type IL-1ra, with DoB 0041 being the most active. Analysis of the receptor-binding capacity of the IL-1ra mutants showed that all three mutants could inhibit binding of IL-1alpha or IL-1beta to IL-1RI-bearing cells more efficiently than wild-type IL-1ra. Conversely, binding of IL-1beta to IL-1RII-bearing cells could be inhibited by DoB 0041 much less efficiently than by wild-type IL-1ra. It is known that the two types of IL-1 receptors (IL-1RI and IL-1RII) play different roles in the regulation of IL-1 activity, with IL-1RI being solely responsible for cell triggering upon IL-1 binding, whereas IL-1RII acts as a scavenger of IL-1 and can thus be considered as a natural IL-1 inhibitor. Thus, the enhanced inhibitory capacity of DoB 0041 as compared with wild-type IL-1ra is explained in terms of better binding to the activating receptor IL-1RI and poorer interaction with the inhibitory receptor IL-1RII.

Animals↗

Incidence of insulin-dependent diabetes mellitus among Sardinian-heritage children born in Lazio region, Italy.

BACKGROUND: The relative importance of genetic and environmental factors in causing insulin-dependent diabetes mellitus (IDDM) is unknown. We studied this question by assessing the incidence of the disease in children, born in a region with a low incidence of IDDM (Lazio), but whose parents came from a region with high incidence (Sardinia). METHODS: We identified all IDDM cases that occurred between 1989 and 1994. We used as the denominator the number of children aged 0-14 born in Lazio of Sardinian parents to calculate incidence. We compared this rate with the incidences of IDDM in the populations of Lazio and Sardinia. FINDINGS: The age-adjusted incidence of IDDM in Sardinian-heritage children born and living in Lazio was 33.8 per 100,000 per year (95% CI 7.0-99.0) for those with two Sardinian parents, and 15.9 (8.7-26.6) for those with only one parent from Sardinia. The former incidence was not different from that recorded in Sardinia (34.4, 31.3-37.9), but was fourtold that of Lazio-heritage children (7.9, 7.1-8.8). INTERPRETATION: Our results show that two different ethnic groups living in the same region have a fourfold difference in incidence of IDDM. Children of Sardinian-heritage born in Lazio have the same incidence as the population of origin, which is genetically prone to the disease. Moreover, children with one Sardinian parent had a rate half that of Sardinians and double that of the indigenous population. We conclude that in a given population genetic susceptibility determines the frequency of IDDM in response to the environmental challenge.

Adolescent↗

Purification of human recombinant interleukin 1 receptor antagonist proteins upon Bacillus subtilis sporulation.

Human interleukin 1 receptor antagonist (IL-1ra) and IL-1ra mutants were constitutively expressed in recombinant Bacillus subtilis in endocellular and active form. In order to optimize the purification of the recombinant proteins, a new method has been developed. After bacterial growth in fermenter, release of recombinant protein was achieved by starvation-induced sporulation. The sporulation supernatant was recovered by centrifugation, filtered, and subjected sequentially to cation- and anion-exchange chromatography. Alternatively, the fermenter's contents were directly subjected to expanded bed adsorption on a Streamline cation-exchange column, thus avoiding the centrifugation and filtration steps. Up to 88 mg of biological active purified recombinant protein per liter of culture was obtained, with a 72-79% recovery and 98% purity, depending on the molecule. By using the method described here, it is possible to achieve a spontaneous release of recombinant proteins expressed endocellularly at high levels in B. subtilis without need of a cell breakage step. Thus, this method could allow purification of the endocellular recombinant protein as if it were secreted. Furthermore, when using the expanded bed adsorption, highly purified protein was obtained in only two steps after sporulation. Among the advantages of the method, one of the most relevant is the possibility of keeping the system closed up to completion of the first purification step.

Bacillus subtilis↗

Interaction between interleukin-1 and ciliary neurotrophic factor in the regulation of neuroblastoma cell functions.

Human neuroblastoma cells SK-N-SH express significant numbers of IL-1R type I on their surface, as detected by saturation binding and RT-PCR, and are responsive to IL-1beta activation by producing inflammatory cytokines IL-6 and IL-8. IL-1beta can also have an indirect effect on nervous cell functions, since it is able to modulate the stimulus-induced increase of intracellular Ca++ levels, one of the first steps of the cell activation mechanism. In fact, on SK-N-SH neuroblastoma cells, IL-1beta can inhibit the Ca++ increase induced by stimulation of acetylcholine receptors with carbachol. In parallel to IL-1beta, the neurotrophic factor CNTF also shows an inhibitory effect on carbachol-stimulated Ca++ increase in CNTFRalpha-expressing SK-N-SH cells. However, when simultaneously present, the two cytokines cross-inhibit, thus allowing full cell activation in response to the cholinoceptor agonist. The inhibitory effect of CNTF on IL-1beta activities on nervous cells was confirmed in the IL-6 production assay. In fact, while CNTF could not induce IL-6 production, it could strongly inhibit cytokine production in response to IL-1beta in SK-N-SH cells. The down-modulation of IL-1 effects by CNTF could be one of the mechanisms controlling the extent of the inflammatory reaction at the nervous system level.

Ciliary Neurotrophic Factor↗

IL-1 beta primes IL-8-activated human neutrophils for elastase release, phospholipase D activity, and calcium flux.

Interleukin-8 (IL-8), the prototype of the alpha (e.i., C-X-C branch) chemokine family, induced elastase release in a concentration-dependent manner (50-1000 ng/mL) in cytochalasin B-treated human polymorphonuclear leukocytes (PMNs). This response was potentiated about twofold if PMNs were preexposed to interleukin-1 beta (IL-1 beta) at concentrations that were by themselves inactive. The effect of IL-1 beta was clearly observed after 5 min and was maximal after a 30-min preincubation of the cells. The effect was present over the whole active concentration range of IL-8 and was completely blocked by the presence of IL-1 receptor antagonist. Priming of elastase release by IL-1 beta was not associated with a change in receptor number or affinity for IL-8. On the contrary, it was correlated with priming of phospholipase D activity and calcium flux activated by IL-8. Preincubation of the cells with ethanol and/or La3+ inhibited IL-8-induced degranulations, suggesting that activation of phospholipase D and increase of [Ca2+]i were important for this response. In contrast, ethanol and La3+ did not decrease the priming effect of IL-1 beta. IL-8 and IL-1 beta have been shown to be released by the same cell types and may be concomitantly present at sites of inflammation, giving rise to an amplification of the inflammatory response.

Calcium↗

Mapping of receptor binding sites on IL-1 beta by reconstruction of IL-1ra-like domains.

Upon structure comparison between IL-1 beta and its antagonist IL-1ra, single or multiple residues along the IL-1 beta sequence were replaced with the corresponding amino acids present in the IL-1ra protein, in the attempt to identify sites important for receptor binding and for biologic activity on the two molecules. Ten of fifteen mutant proteins had activity comparable to that of wild-type IL-1 beta in three different biologic assays and in receptor binding, indicating that the introduced changes did not influence the functional structure of the protein. Conversely, three mutants (SMIL-9: 127/263 R/T-->W/Y; SMIL-10: 125/127/263/265 T/R/T/Q-->R/W/Y/E; SMIL-15:222/227 I/E-->S/S) showed an increased binding capacity for IL-1RI, not paralleled by increased agonist activity, indicating that the introduced IL-1ra residues could be involved in the nonagonist IL-1RI binding site. On the other hand, two mutants showed diminished binding capacity with concomitant decrease in biologic activity. Both mutants (SMIL-1, five substitutions in the loop 202-214; and SMIL-3, total replacement of the loop 164-173 with the IL-1ra stretch 52-55) included substitutions of residues allegedly important for agonist binding to IL-1RI. Mutant SMIL-3 showed the most profound reduction in binding capacity for IL-1RI (CDw121a) and a more than 1,000-fold reduced biologic activity both in vitro and in vivo, but it retained full capacity of binding to IL-1RII (CDw121b) and acted as a selective antagonist of IL-1RII. From these results the following conclusions can be drawn. IL-1 beta binds to IL-1RI and to IL-1RII through different sites, and the loop 164-173 appears as one of the areas involved in the selective interaction with IL-1RI. Agonist (IL-1 beta) and nonagonist (IL-1ra) binding to IL-1RI occur through distinct sites, with loops 164-173 and 202-214 of IL-1 beta identified as two of the sites selectively involved in agonist binding to the activating receptor.

Animals↗

Single-cell analysis of macrophage chemotactic protein-1-regulated cytosolic Ca2+ increase in human adherent monocytes.

The increase in intracellular free Ca2+ ([Ca2+]i) associated with interaction of monocyte chemotactic protein-1 (MCP-1) and related chemokines beta with adherent human blood monocytes was investigated at the single-cell level. We used f-MLP as reference chemotactic agent. MCP-1 caused an increase in [Ca2+]i in individual adherent monocytes, with 95% of cells responding to the chemokine at 20 ng/mL. Response to MCP-1 was already detectable at 1 pg/mL, whereas at least 5 ng/mL were required for significant chemotactic response. The kinetics of the increase in [Ca2+]i were considerably different for MCP-1 compared with f-MLP. MCP-1 produced a slow increase of [Ca2+]i that reached a plateau in 5 to 7 minutes. On the other hand, the increase of [Ca2+]i induced by f-MLP appeared to be biphasic, with a fast phase peaking after 5 to 40 seconds followed by a slower wave. Blocking of Ca2+ channels by Ni2+ or Cd2+ and/or chelation of extracellular free Ca2+ considerably reduced but did not abolish response to MCP-1, had no effect on the first wave of [Ca2+]i induced by f-MLP, and completely abrogated the second, slower wave. Thapsigargin, which empties intracellular Ca2+ stores, inhibited f-MLP-induced [Ca2+]i increase but fully blocked the action of MCP-1 only when combined with Ni2+. Thus, increase of [Ca2+]i induced by MCP-1 is apparently due to independent opening of a channel and mobilization from intracellular stores, whereas f-MLP-induced mobilization of Ca2+ from stores causes subsequent opening of a channel. At variance with MCP-1, the related chemokine MCP-2 induced only a low increase of [Ca2+]i in about 40% of adherent monocytes. Inhibition of chemokine-induced increase of [Ca2+]i by cholera or pertussis toxin indicated that MCP-1 and MCP-2 activate monocytes through different intracellular pathways. These results demonstrate at the single-cell level that the mechanisms and dynamics of increased [Ca2+]i are considerably different for f-MLP and chemokines beta. In addition, the [Ca2+]i increase induced by the two related chemokines beta MCP-1 and MCP-2 appears to be differently regulated, suggesting interaction with distinct receptors.

Cadmium↗

Transfected type II interleukin-1 receptor impairs responsiveness of human keratinocytes to interleukin-1.

Of the two known types of specific receptors for interleukin (IL)-1, the function of the type II IL-1 receptor (IL-1RII) is still elusive. IL-1RII is allegedly devoid of signaling capacity and is therefore thought to act by trapping and inhibiting IL-1. To directly assess the functional role of IL-1RII, a human keratinocyte cell line has been stably transfected with a cDNA coding for IL-1RII, and its responsiveness to IL-1 has been compared with that of nontransfected cells. Parental cells express IL-1RI and are responsive to low doses of IL-1, whereas transfected cells overexpress IL-1RII, both in its membrane and soluble form, and show a dramatically impaired response to IL-1. Selective block of IL-1RII restores the ability of transfected keratinocytes to respond to IL-1, indicating that the overexpressed IL-1RII is in fact uniquely responsible for their refractoriness to IL-1. The main mechanism of unresponsiveness in transfected keratinocytes appears to be the capture and neutralization of IL-1 by the soluble form of IL-1RII.

Base Sequence↗

Activation of the Ca2+ message system by parathyroid hormone is dependent on the cell cycle.

Putative osteoblastic UMR 106-01 cells exhibit heterogeneous intracellular calcium [Ca2+]i responses to parathyroid hormone (PTH). To determine whether this phenomenon is secondary to cell cycle asynchrony, UMR 106-01 cultures were synchronized at the G1/S boundary using a sequential thymidine-aphidicolin treatment. Five hours after release from the block > 80% of the cells are in S phase, while nontreated confluent cultures are in G1. Using video image analysis of single cells loaded with fura-2, PTH (10-(7) M) induced transient increases in [Ca2+]i preferentially in cells in S phase, with 82% response frequency whereas cells in G1 phase responded poorly to PTH with only 10% response frequency. In contrast, cell response to fetal calf serum was more frequent in G1 than in S phase. Pretreatment with La3+, nifedipine or pertussis toxin reduced both the frequency and amplitude of the PTH response in S phase to values comparable to those observed in cells in G1 phase. There was no significant difference in inositol trisphosphate generated by PTH stimulation in either phase. Thus, the heterogeneous osteoblastic [Ca2+]i responsive to PTH is cell cycle-dependent with the change in the G1 to the S phase mode of response dependent on active coupling between the PTH receptor and a Ca2+ channel via a pertussis toxin-sensitive G protein.

Calcium↗

[Wolfram syndrome. Personal experience].

We report on a young patient who suffered from diabetes mellitus and neurosensorial deafness from the age of two. One year later she was noted to have deteriorated vision and the diagnosis of optic atrophy was made, her visual acuity decreased progressively. At the age of six she was admitted to our hospital because of thiamine responsive megaloblastic anemia, a rare clinical feature of Wolfram's syndrome (only 13 cases have been reported to date). Thiamine (75 mg/day) was commenced at a single oral dose with a rapid increase of Hb level after a few days of therapy. The insulin requirement didn't decrease during thiamine therapy, the C-peptide level after glucagon remained almost indosable. No improvement was observed in the deafness and in the optic atrophy. These findings suggest that diabetes mellitus and optic atrophy, in Wolfram's syndrome are not related to thiamine metabolism.

Autoantibodies↗

Ligand binding to monocyte alpha 5 beta 1 integrin activates the alpha 2 beta 1 receptor via the alpha 5 subunit cytoplasmic domain and protein kinase C.

Regulation of the functional status of integrin receptors plays a critical role in inflammation and tissue remodeling, as it affects cell adherence and cytokine secretion. We have previously shown that in monocytes the binding of collagen to the alpha 2 beta 1 integrin induces the release of IL-1, an event that is potentiated by binding of fibronectin (Fn) to the alpha 5 beta 1 integrin. In this study, we have investigated the mechanisms leading to this phenomenon. Fn binding to alpha 5 beta 1 induced intracellular signals which increased the alpha 2 beta 1-dependent adhesiveness of monocytes to collagen without modifications of alpha 2 beta 1 expression. By using Abs against the intracellular region of the alpha 5 subunit of the alpha 5 beta 1 receptor, and specific inhibitors of protein kinase C (PKC), we found that the potentiation effect of Fn on monocyte IL-1 production and their adherence to collagen was dependent on an intact alpha 5 subunit cytoplasmic domain, and required PKC activation. Although the alpha 2 beta 1 could be activated by several intracellular second messengers, including protein kinase A and intracellular calcium, the potentiating effect of Fn was mediated only by PKC. These data provide an example of a novel regulatory mechanism: potentiation of beta 1 integrin-mediated events as a result of ligand binding to another integrin of the same class. They also show that the intracellular region of alpha 5 beta 1 plays a critical role in transducing signals generated by ligand binding to alpha 5 beta 1.

Calcium↗

Interleukin-4 inhibits bone resorption and acutely increases cytosolic Ca2+ in murine osteoclasts.

Interleukin-4 (IL-4) is an immune cytokine recently shown to inhibit bone resorption. To determine whether IL-4 directly acts on osteoclasts, we have analyzed its effect on cytosolic calcium concentration [Ca2+]i and bone resorptive function of murine osteoclastic cells generated from bone marrow/stromal cell co-cultures. IL-4 exposure induced an immediate and sustained increase in [Ca2+]i that remained elevated for at least 10 min. This IL-4 effect was dose-dependent, with the maximal effect (209 +/- 15% of baseline, n = 16) at 200 units/ml and an apparent ED0.5 of 60 units/ml. The IL-4-induced [Ca2+]i rise required extracellular Ca2+ influx, since the response was prevented by LaCl3, and voltage-gated Ca2+ channel blockers, although the IL-4 effect was more sensitive to nicardipine and nifedipine than to diltiazem. Depolarization by high extracellular K+ concentration also raised [Ca2+]i, and, under these conditions, osteoclasts failed to respond to IL-4. On the other hand, when intracellular Ca2+ stores were depleted by thapsigargin, IL-4 still induced an increase in [Ca2+]i, although smaller in amplitude and transient. Calcitonin also produced [Ca2+]i increases in osteoclasts, yet it only slightly desensitized these cells to IL-4. Furthermore, IL-4 was much less effective on osteoclasts pretreated (5-10 min) with either forskolin or 8-bromo-cAMP. Both IL-4 and calcitonin were effective even when [Ca2+]i had been increased by exposure to high extracellular Ca2+. Finally, IL-4 dose dependently inhibited the bone-resorptive activity of mature osteoclasts. Therefore, IL-4 signal transduction in osteoclasts involves a rapid and sustained elevation of [Ca2+]i mediated by a voltage-dependent Ca2+ influx, in combination with Ca2+ release from intracellular stores. Modulation of osteoclast [Ca2+]i represents a potential mechanism by which IL-4 inhibits bone resorption.

Animals↗

Analysis of protein kinase C requirement for exocytosis in permeabilized rat basophilic leukaemia RBL-2H3 cells: a GTP-binding protein(s) as a potential target for protein kinase C.

The role of protein kinase C in calcium-dependent exocytosis was investigated in permeabilized rat basophilic leukaemia cells. When protein kinase C was down-regulated by phorbol myristate acetate (1 microM for 3-6 h) or inhibited by pharmacological agents such as calphostin C (1 microM) or a protein kinase C-specific pseudo-substrate peptide inhibitor (100-200 microM), cells lost the ability to secrete in response to 10 microM free Ca2+. In contrast, a short treatment (15 min) with phorbol myristate acetate, which maximally activates protein kinase C, potentiated the effects of calcium. Biochemical analysis of protein kinase C-deprived cells indicated that loss of the Ca(2+)-induced secretory response correlated with disappearance of protein kinase C-alpha. In addition, at the concentrations effective for exocytosis, calcium caused translocation of protein kinase C-alpha to the membrane fraction and stimulated phospholipase C, suggesting that, in permeabilized cells, protein kinase C can be activated by calcium through generation of the phospholipase C metabolite diacylglycerol. The delta, epsilon and zeta Ca(2+)-independent protein kinase C isoenzymes were insensitive to phorbol myristate acetate-induced down-regulation and did not, as expected, translocate to the particulate fraction in response to calcium. Interestingly, secretory competence was restored in cells depleted of protein kinase C or in which protein kinase C itself was inhibited by non-hydrolysable GTP analogues, but not by GTP, suggesting that protein kinase C might regulate the ability of a G protein(s) directly controlling the exocytotic machinery to be activated by endogenous GTP.

Amino Acid Sequence↗

Norepinephrine, unlike ATP, induces all-or-none increase in cytosolic calcium in thyroid cells. The role of inositol-trisphosphate-sensitive stores and calcium channels.

The mechanism of action of norepinephrine and ATP has been analyzed in single FRTL5 cells (a normal thyroid cell line), loaded with the fluorescent Ca2+ probe Fura2. ATP increased the cytosolic Ca2+ in an apparently concentration-dependent manner with a maximal effect at 10 microM (413 +/- 26% over basal levels of 135 +/- 7 nM). In contrast, the norepinephrine-induced increase (198 +/- 5% over basal) was concentration independent in individual cells, the minimal effective concentration being 1 nM. However, the number of cells responding to norepinephrine was concentration dependent. The ATP-induced Ca2+ rise was biphasic, consisting of a rapid rise (2-4 s, 252 +/- 15%), resembling the effect of norepinephrine, followed by a slower and longer component, which reached a plateau in 0.5-2 min. The second component appeared to be related to the opening of a channel, since it required extracellular Ca2+ and was abolished by SC38249, an inhibitor of the second-messenger-operated and voltage-operated channels. Moreover, it was inhibited by 4 beta-phorbol 12-myristate 13-acetate, suggesting that protein kinase C might be involved in the modulation of this Ca2+ channel.

Adenosine Triphosphate↗

Activation of the Ca2+ message system by parathyroid hormone is dependent on the cell cycle.

To verify whether the heterogeneous intracellular calcium ([Ca2+]i) responses to PTH observed in the UMR 106-01 osteogenic sarcoma cells are secondary to cell cycle asynchrony or to genotypic differences within the population, we synchronized cell monolayers at the G1/S boundary using a sequential thymidine-aphidicolin block. Video image analysis of fura-2-loaded cells revealed that PTH (10(-7) M) induced transient increases of [Ca2+]i preferentially in cells in S phase (82% response frequency, n = 63; 286 +/- 33% of baseline, n = 29), whereas cells in G1 phase responded poorly to PTH (10% response frequency, n = 51; 140 +/- 8% of baseline, n = 5). In contrast, cell exposure to 2% fetal calf serum was followed by [Ca2+]i transients in 83% (n = 42) of cells in G1 phase, but in only 25% (n = 63) of cells in S phase, with similar response amplitude. Hormonal responsiveness was heterogeneous in small clones obtained from single UMR 106-01 cells, with response frequency similar to that observed in nonsynchronized cultures. Pretreatment with either La3+, nifedipine, or pertussis toxin reduced both frequency and amplitude of PTH response in S phase to levels close to G1 phase, whereas there was no significant difference in inositol trisphosphate generated by PTH stimulation in either phase. Therefore, the heterogeneous [Ca2+]i responses of UMR 106-01 cells to hormonal stimulation is dependent on the phase of the cell cycle, rather than on genotypic heterogeneity. The switch from the G1 to the S phase mode of response is driven by active coupling between the PTH receptor and a Ca2+ channel through a pertussis toxin-sensitive G protein.

Animals↗

Muscarinic regulation of phospholipase A2 and iodide fluxes in FRTL-5 thyroid cells.

FRTL-5 thyroid cells express a muscarinic receptor which inhibits the phospholipase C activity in a pirenzepine-insensitive manner. We here report that the cholinergic agonist carbachol decreases in these cells the steady-state iodide content, an effect correlated with the iodination of thyroglobulin and with thyroid hormone formation. Several signal pathways may be involved in this phenomenon since carbachol in addition to inhibiting phospholipase C, increased the arachidonic acid release and modified the adenylyl cyclase activity. In FRTL-5 cells, arachidonic acid is released via the direct stimulation of phospholipase A2 by a pirenzepine-sensitive muscarinic receptor coupled to a GTP binding protein sensitive to pertussis toxin. Regarding adenylyl cyclase, carbachol potentiated the thyrotropin-induced stimulation of the enzyme, whereas it did not affect the basal levels of cAMP. In vitro binding studies revealed the presence of two muscarinic binding sites. To summarize, the analysis of signal pathways and of in vitro binding sites indicates a complex muscarinic regulation of thyroid function, which includes the modulation of iodide fluxes.

Animals↗

Evidence that a guanine nucleotide-binding protein linked to a muscarinic receptor inhibits directly phospholipase C.

The mechanism of phospholipase C regulation by inhibitory receptors was analyzed both in intact and in permeabilized rat thyroid cells (FRTL5). In this system, the muscarinic agonist carbachol inhibited phospholipase C, as indicated by the decrease in the basal levels of inositol 1,4,5-trisphosphate as well as by the reduced adrenergic stimulation of phosphoinositol accumulation, which was paralleled by a fall in the cytosolic Ca2+ levels. This inhibition involved an M2 muscarinic receptor because it was abolished by atropine but not by the M1 antagonist pirenzepine. Cells pretreated with pertussis toxin were not responsive to carbachol, indicating the involvement of a guanine nucleotide-binding protein in this inhibitory process. This possibility was further evaluated in permeabilized cells, where the carbachol inhibition was shown to be completely dependent on GTP. Known second messengers were not involved in this inhibitory process since Ca2+, cAMP, and activators of protein kinases were not able to mimic or prevent the carbachol effect either in intact or in permeabilized FRTL5 cells. In this system, the phospholipases C and A2 are coupled to two classes of muscarinic receptors that display a different sensitivity to pertussis toxin. The carbachol inhibitory effect occurred under conditions that prevented activation of phospholipase A2, excluding a role of the arachidonic acid metabolism in this process. Taken together these data provide the strongest support to date that an inhibitory guanine nucleotide-binding protein sensitive to pertussis toxin can directly mediate receptor-induced inhibition of phospholipase C.

Alkaloids↗