Rapid response of protein synthesis to insulin in 3T3 cells: Effects of protein kinase C depletion and differences from the response to serum repletion

1986 ◽  
Vol 6 (9) ◽  
pp. 797-804 ◽  
Author(s):  
John E. Hesketh ◽  
Gillian P. Campbell ◽  
Peter J. Reeds

Quiescent 3T3 cells grown in media containing 4% foetal calf serum showed different responses to insulin and to serum repletion (to 12%). Insulin stimulated protein synthesis within 1 h and this early response was insensitive to actinomycin D. The later insulin response showed progressive sensitivity to actinomycin D. The serum response was slower, not occurring until 1 h, and was inhibited by actinomycin D. Depletion of cell protein kinase C by pre-treatment with phorbol ester caused a total block of the immediate response to insulin but had little effect on the response to serum or the later response to insulin. Acute phorbol ester treatment stimulated protein synthesis.

1992 ◽  
Vol 3 (9) ◽  
pp. 1049-1056 ◽  
Author(s):  
H Eldar ◽  
E Livneh

Cell lines stably overexpressing protein kinase C (PKC)-alpha were previously described by us. These cell lines were generated by the introduction of the full length cDNA coding for PKC-alpha into Swiss/3T3 cells. Here we show that activation of PKC-alpha by phorbol-esters induced in these cells specific phosphorylation of two cellular proteins p90 and p52. Phosphorylation of p80 (MARCKS protein), previously identified as a substrate for PKC, was also enhanced. Phosphorylated p90 and p52 proteins were associated with particulate membrane-enriched fractions and were extractable with the use of nonionic detergents. Time course analysis of phorbol-ester induced phosphorylation of p90 and p52 revealed maximal stimulation of phosphorylation after 15-30 min. Phosphamino acid analysis showed that phosphorylation of p90 and p52 occurred mainly on serine residues. Phosphorylation of p52 was also on threonine residues. Whereas, phorbol ester activation induced phosphorylation of both p90 and p52, the mitogens platelet-derived growth factor (PDGF) and fibroblast growth factor (FGF) enhanced phosphorylation of p90, but not p52. Thus, our studies showed the involvement of PKC-alpha in the regulation of p90 and p52 phosphorylation and provided direct evidence for the role of PKC-alpha in cellular signaling by PDGF and FGF. Moreover, the fact that phosphorylation of p52 was specific to phorbol ester activation may suggest its involvement in tumor promotion. Characterization of p90 and p52 will enable us to reveal the phosphorylation cascade activated downstream to PKC-alpha and to determine their role in mitogenic signaling and tumor promotion.


Blood ◽  
1988 ◽  
Vol 72 (1) ◽  
pp. 208-213 ◽  
Author(s):  
RM Stone ◽  
E Sariban ◽  
GR Pettit ◽  
DW Kufe

Phorbol esters induce the human HL-60 promyelocytic cell line to differentiate along a monocytic pathway. This induction of differentiation may involve phorbol ester-induced activation of the phospholipid- and calcium-dependent protein kinase C. Bryostatin 1, a macrocyclic lactone, has been shown to compete with phorbol esters for binding to protein kinase C. We have confirmed that bryostatin 1 translocates activity of protein kinase C from the cytosolic to membrane fractions of HL-60 cells. The present results also demonstrate that bryostatin 1 (10 nmol/L) induces monocytic differentiation of HL- 60 cells as determined by adherence, growth inhibition, appearance of monocyte cell surface antigens, and alpha-naphthyl acetate esterase staining. Furthermore, bryostatin 1 (10 nmol/L) downregulated c-myc expression and induced c-fos, c-fms, and tumor necrosis factor transcripts. These changes in gene expression induced by bryostatin 1 are similar to those associated with phorbol ester-induced monocytic differentiation of HL-60 cells. In contrast, exposure to a higher concentration of bryostatin 1 (100 nmol/L) had less of an effect on growth inhibition of HL-60 cells and changes in gene expression. Moreover, 100 nmol/L bryostatin 1 antagonized the cytostatic effects and adherence induced by phorbol esters. Our results thus suggest that bryostatin 1 activates HL-60 cell protein kinase C and that this effect is associated with induction of monocytic differentiation.


1989 ◽  
Vol 257 (3) ◽  
pp. 905-911 ◽  
Author(s):  
J C Adams ◽  
W J Gullick

Down-regulation of protein kinase C induced by 12-O-tetradecanoylphorbol 13-acetate (TPA) was examined in Swiss 3T3, V79, MDBK and C6 cells by Western blotting. Variations in the rate of down-regulation caused by treatment with 100 nM-TPA were observed; TPA treatment for 5 h caused maximal down-regulation in V79 cells, whereas TPA treatment for 10 h or 30 h was needed for maximal down-regulation of protein kinase C in MDBK or Swiss 3T3 cells respectively. The decrease in amount of immunologically detectable protein kinase C was 30% in MDBK cells and 100% in V79 and Swiss 3T3 cells. MDBK and C6 cells could be completely depleted of protein kinase C by treatment with 250 nM-TPA. In C6 cells, after treatment with 500 nM-TPA, an 80% loss of protein kinase C was seen over 10 h. Measurement of the numbers of phorbol-ester-binding sites remaining in each cell line when protein kinase C was maximally down-regulated indicated that in MDBK and Swiss 3T3 cells loss of phorbol-ester-binding sites paralleled loss of protein kinase C, whereas in V79 and C6 cells no such correlation was observed.


Blood ◽  
1988 ◽  
Vol 72 (1) ◽  
pp. 208-213 ◽  
Author(s):  
RM Stone ◽  
E Sariban ◽  
GR Pettit ◽  
DW Kufe

Abstract Phorbol esters induce the human HL-60 promyelocytic cell line to differentiate along a monocytic pathway. This induction of differentiation may involve phorbol ester-induced activation of the phospholipid- and calcium-dependent protein kinase C. Bryostatin 1, a macrocyclic lactone, has been shown to compete with phorbol esters for binding to protein kinase C. We have confirmed that bryostatin 1 translocates activity of protein kinase C from the cytosolic to membrane fractions of HL-60 cells. The present results also demonstrate that bryostatin 1 (10 nmol/L) induces monocytic differentiation of HL- 60 cells as determined by adherence, growth inhibition, appearance of monocyte cell surface antigens, and alpha-naphthyl acetate esterase staining. Furthermore, bryostatin 1 (10 nmol/L) downregulated c-myc expression and induced c-fos, c-fms, and tumor necrosis factor transcripts. These changes in gene expression induced by bryostatin 1 are similar to those associated with phorbol ester-induced monocytic differentiation of HL-60 cells. In contrast, exposure to a higher concentration of bryostatin 1 (100 nmol/L) had less of an effect on growth inhibition of HL-60 cells and changes in gene expression. Moreover, 100 nmol/L bryostatin 1 antagonized the cytostatic effects and adherence induced by phorbol esters. Our results thus suggest that bryostatin 1 activates HL-60 cell protein kinase C and that this effect is associated with induction of monocytic differentiation.


1989 ◽  
Vol 121 (3) ◽  
pp. 350-360 ◽  
Author(s):  
Günter Emons ◽  
Ernst U. Frevert ◽  
Olaf Ortmann ◽  
Ulrich Fingscheidt ◽  
Rita Sturm ◽  
...  

Abstract. Cultured pituitary cells from adult female rats were treated for 4 or 24 h in the absence or presence of E2 (10−9 mol/1) with increasing concentrations of the transcription inhibitor actinomycin-D or the translation inhibitor puromycin. During the last 4 h of incubation, LH release was stimulated with 5 × 10−10 mol/1 GnRH. The positive E2 effect observed after 24 h treatment with the steroid was clearly abolished by actinomycin-D at concentrations ≥10−10 mol/1 and by puromycin at concentrations ≥ 10−5 mol/1. These findings indicate that the positive E2 effect on GnRH-induced LH release is fully dependent on intact mRNA and protein synthesis. The negative E2 effect observed after 4 h treatment with the steroid was not affected by actinomycin-D and abolished by puromycin only at concentrations ≥ 10−4 mol/1. Similar results were obtained, when cells had been treated for 4 h with actinomycin-D or puromycin before the 4 h E2 treatment started. Thus, the negative E2 effect seems to be independent of mRNA synthesis and dependent on protein synthesis to a lesser extent than the positive E2 effect. In an attempt to identify positively the subcellular mechanism via which E2 exerts its negative effect, several steps in the GnRH stimulus secretion coupling mechanism were checked whether or not they are modulated by E2. The negative effects of E2 (10−9 mol/1) on LH release induced by GnRH (10−10, 10−9 mol/1) and by the activators of voltage dependent Ca2+ channels K+ (64 mmol/1) or veratridine (3.3 × 10−5 mol/1) were comparable to those of the calcium antagonist verapamil (10−6 mol/1). These findings supported the speculation that E2 might act on the Ca2+ channels. The LH release induced by the Ca2+ ionophores A 23 187 (10 −4 mol/1) or ionomycin (6.6 × 10−5 mol/1), however, was also significantly reduced by 10−9 mol/1 E2, indicating that the steroid modulated a mechanism secondary to the increase of intracellular Ca2+. Also GnRH (10−9, 10−8 mol/1) induced accumulation of [3H]inositol phosphates was not influenced by E2 (10−9 mol/1) treatment, though the steroid exerted a significant negative effect on the LH release by these cells, indicating that phosphatidylinositol-4,5-biphosphate breakdown is not the point of attack for the estrogen. The LH release induced by the activation of protein kinase C with the phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA, 10−7 mol/1) or with the synthetic diacylglycerol 1,2-dioleyl-sn-glycerol (DOG, 5 × 10−5 mol/1, 10−4 mol/1) was significantly reduced by E2 treatment. These findings give rise to the speculation that E2 might exert its negative effect on GnRH-induced LH release in cultured pituitary cells at the level of protein kinase C or a mechanism secondary to the activation of this enzyme.


1990 ◽  
Vol 271 (2) ◽  
pp. 309-315 ◽  
Author(s):  
A J Polverino ◽  
B P Hughes ◽  
G J Barritt

1. The ability of bombesin or platelet-derived growth factor (PDGF) to stimulate Ca2+ inflow (assessed by measuring changes in the intracellular free Ca2+ concentration in cells loaded with fura-2) in NIH-3T3 cells transformed with the EJ/T24-Ha-ras-1 oncogene is inhibited when compared with the action of the agonists on wild-type cells. 2. The effects of transformation with the ras oncogene are associated with complete inhibition of the ability of bombesin to release Ca2+ from intracellular stores, a substantial decrease in the number of bombesin receptors, no change in the ability of foetal calf serum or ionomycin to release Ca2+ from intracellular stores and the activation of protein kinase C. 3. The effects of transformation with the H-ras oncogene on the ability of bombesin or PDGF to stimulate Ca2+ inflow were mimicked by a 30 min exposure of wild-type cells to phorbol dibutyrate. This action of phorbol dibutyrate was completely blocked by prior treatment of wild-type cells for 24 h with the phorbol ester. 4. It is concluded that one of the actions of the H-ras oncogene in fibroblasts is to inhibit agonist-stimulated Ca2+ inflow by a mechanism which involves the activation of protein kinase C.


1997 ◽  
Vol 25 (1) ◽  
pp. 45S-45S ◽  
Author(s):  
Sarah. A. Roberts ◽  
W. Jonathan. Ryves ◽  
Fred. J. Evans

2018 ◽  
Vol 38 (19) ◽  
Author(s):  
Mikhail I. Dobrikov ◽  
Elena Y. Dobrikova ◽  
Matthias Gromeier

ABSTRACT Eukaryotic ribosomes contain the high-affinity protein kinase C βII (PKCβII) scaffold, receptor for activated C kinase (RACK1), but its role in protein synthesis control remains unclear. We found that RACK1:PKCβII phosphorylates eukaryotic initiation factor 4G1 (eIF4G1) at S1093 and eIF3a at S1364. We showed that reversible eIF4G(S1093) phosphorylation is involved in a global protein synthesis surge upon PKC–Raf–extracellular signal-regulated kinase 1/2 (ERK1/2) activation and in induction of phorbol ester-responsive transcripts, such as cyclooxygenase 2 (Cox-2) and cyclin-dependent kinase inhibitor (p21Cip1), or in 5′ 7-methylguanosine (m7G) cap-independent enterovirus translation. Comparison of mRNA and protein levels revealed that eIF4G1 or RACK1 depletion blocked phorbol ester-induced Cox-2 or p21Cip1 expression mostly at the translational level, whereas PKCβ inhibition reduced them both at the translational and transcript levels. Our findings reveal a physiological role for ribosomal RACK1 in providing the molecular scaffold for PKCβII and its role in coordinating the translational response to PKC-Raf-ERK1/2 activation.


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