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Regulation of glutamine synthetase in cultured 3T3-L1 cells by insulin, hydrocortisone, and dibutyryl cyclic AMP.

The 3T3-L1 mouse fibroblast cell line develops morphological and biochemical characteristics of adipocytes when maintained at confluence. This conversion to adipocytes is accelerated by addition of insulin to the culture medium [Green, H. & Kehinde, O. (1975) Cell 5, 19-27]. During the course of the insulin-mediated adipocyte conversion, the specific activity (units/mg of protein) of glutamine synthetase [L-glutamate:ammonia ligase (ADP-forming), EC 6.3.1.2] increases more than 100-fold. The specific activities of hexokinase (ATP:D-hexose 6-phosphotransferase, EC 2.7.1.1) and glucose-6-P dehydrogenase (D-glucose-6-phosphate:NADP(+) 1-oxidoreductase, EC 1.1.1.49) also increase but less dramatically (1.5- to 3-fold). In contrast, confluent cells maintained in the absence of insulin for the same time (12-20 days after confluence) display only minimal increases in the activity of these enzymes. Maintenance of confluent cells in culture medium lacking added L-glutamine has little, if any, effect on glutamine synthetase activity in either control or insulin-treated cultures. Treatment of confluent 3T3-L1 cultures with hydrocortisone (1 mug/ml) for 3 days prior to harvesting results in an increase in glutamine synthetase specific activity of 12-fold for control cultures maintained for 13 days in the absence of insulin and 1.4-fold for adipocyte cultures maintained for 13 days in the presence of insulin (10 mug/ml). Treatment of 3T3-L1 control cells and adipocytes with dibutyryl cyclic AMP (1 mM) plus theophylline (1 mM) decreases the glutamine synthetase specific activity and almost completely reverses the insulin- and hydrocortisone-mediated increases in enzyme activity. In contrast, treatment with dibutyryl cyclic AMP plus theophylline has relatively little effect on the specific activities of hexokinase or glucose-6-P dehydrogenase or on the protein content of the cultures. These data indicate that glutamine synthetase activity is hormonally regulated in 3T3-L1 cells.

Adipose Tissue↗

Alterations in insulin binding accompanying differentiation of 3T3-L1 preadipocytes.

Expression of the adipocyte phenotype by differentiating 3T3-L1 preadipocytes occurs upon exposure of the cells to insulin. Differentiation-linked changes in 125I-labeled insulin binding to 3T3-L1 cells were monitored and compared with those in nondifferentiating 3T3-C2 controls treated similarly. Without chronic insulin treatment, 3T3-L1 cells failed to express the adipocyte phenotype but maintained a level of 25,000-35,000 insulin-binding sites per cell. Treatment of 3T3-L1 cells with insulin resulted in an initial suppression of insulin binding followed by a 12-fold increase that paralleled the appearance of differentiated cells. A maximum of 170,000 insulin-binding sites per cell was attained for a population in which greater than 75% of the cells had differentiated. The increase of insulin receptor level appears to be differentiation-dependent and is not a general response of cells to the culture conditions. 3T3-C2 cells maintained in the presence of insulin for 30 days exhibited the undifferentiated phenotype and suppressed levels of insulin binding (35,000 sites per cell). The binding capacity of 3T3-L1 cells for epidermal growth factor remained unchanged between 25,000 and 40;000 sites per cell and was independent of the state of differentiation. Thus, induction by insulin in receptor-specific changes. Insulin receptors increase in number but epidermal growth factor receptors remain constant.

Adipose Tissue↗

An established preadipose cell line and its differentiation in culture. II. Factors affecting the adipose conversion.

When cells of the established preadipose line 3T3-L1 enter a resting state, they accumulate triglyceride and convert to adipose cells. The adipose conversion is brought about by a large increase in the rate of triglyceride synthesis, as measured by the incorporation rate of labeled palmitate, acetate, and glucose. In a resting 3T3 subline which dose not undergo the adipose conversion, the rate of triglyceride synthesis from these precursors is very low, and similar to that of growing 3T3-L1 cells, before their adipose conversion begins. If 3T3-L1 cells incorporate bromodeoxyuridine during growth, triglyceride synthesis does not increase when the cells reach a stationary state, and triglycerides do not accumulate. As would be expected from their known actions on tissue adipose cells, lipogenic and lipolytic hormones and drugs affect the rate of synthesis and accumulation of triglyceride by 3T3-L1 cells, but in contrast to bromodeoxyuridine, these modulating agents do not seem to affect the proportion of cells which undergoes the adipose conversion. Insulin markedly increases the rate of synthesis and accumulation of triglyceride by fatty 3T3-L1 cells, and produces a related increase in cell protein content. Of 20 randomly selected clones isolated from the original 3T3 stock, 19 are able to convert to adipose cells. The probability of such a conversion varies greatly among the different clones, in most cases being much lower than for 3T3-L1; but once the conversion takes place, the adipose cells produced from all of the 19 clones appear similar. The adipose conversion would seem to depend on an on-off switch, which is on with a different probability in different clones. This probability is quasistably inherited by the clonal progeny.

Acetates↗

Induction of lipogenesis during differentiation in a "preadipocyte" cell line.

3T3-L1 fibroblasts differentiate in culture into cells having adipocyte character. This transition is accompanied by a 40- to 50-fold rise in the incorporation of [14C]acetate into triglyceride. The increase in lipogenic rate is exactly parallel to a coordinate rise in the activities of the key enzymes of the fatty acid biosynthetic pathway (ATP-citrate lyase, acetyl-CoA carboxylase, and fatty acid synthetase). Immunological studies indicate that the elevated acetyl-CoA carboxylase activity is the product of an increased cellular enzyme level.

ATP Citrate (pro-S)-Lyase↗

A genome-wide, CRISPR-based screen reveals new requirements for translation initiation and ubiquitination in driving adipogenic fate change.

In response to excess nutrients, white adipose tissue expands by both generating new adipocytes and upregulating lipogenesis in existing adipocytes. Here, we performed a genome-wide functional CRISPR screen to identify regulators of adipogenesis in the mouse 3T3-L1 preadipocyte model. In this pooled screening strategy, we used FACS to isolate populations based on lipid content, gating for fluorescence intensity of lipophilic fluorescent BODIPY dye. Additionally, we categorized whether the gene functions primarily during mitotic clonal expansion, lipogenesis, or both. We found that translation initiation and ubiquitin-dependent protein stability regulators drive both adipogenic fate change and lipogenesis. We further supported these findings with proteomics, demonstrating that essential changes in protein reprogramming can drive or inhibit 3T3-L1 adipogenesis independent of transcription. Furthermore, we demonstrated that specific branches of the hypusination pathway, a conserved regulator of translation initiation, are critical for translating adipogenic inducers of mitotic clonal expansion and that the neddylation/ubiquitin pathway modulates insulin sensitivity during lipogenesis.

Animals↗

Neutral and acid lipase of mouse 3T3 fibroblasts with increased adipose conversion.

In the resting state, 3T3-L1 fibroblasts become adipose converted and increase their fatty acid and triglyceride synthetase. We have found that they contain four times the neutral lipase activity and 1.5 times the acid lipase activity of logarithmically dividing cells. The activities of lysosomal acid beta-galactosidase and N-acetyl-beta-D-glucosaminidase were the same in the adipose converted and logarithmically dividing cells. The data suggest a possible relation between the increased neutral lipase activity in 3T3-L1 cells and their adipose conversion and demonstrates that the adipose converted 3T3-L1 fibroblasts, unlike true adipose cells, contain high levels of lysosomal acid hydrolases.

Acetylglucosaminidase↗

Desensitization of the insulin receptor at an early postreceptor step by prolonged exposure to antireceptor antibody.

We have used an adipocyte-like cell line, the 3T3-L1 fatty fibroblasts, to compare acute and chronic effects of autoantibodies directed against the insulin receptor. Acute exposure of the cells in tissue culture to the antibodies resulted in a blockade of insulin binding and stimulation of 2-deoxy-glucose transport and glucose oxidation. Maximal acute effects were reached within 30-120 min. Subsequently, the stimulatory response decayed and, after 6 hr in the continuous presence of the antibodies, basal glucose metabolism had returned to the level observed with unexposed cells and a state of severe insulin resistance prevailed. In contrast to the decay of bioresponse, no change in insulin binding was detectable over the same time period. The mechanism of desensitization seemed to involve events early after insulin binding to receptor because cells exposed to antibody for prolonged periods of time, although unresponsive to insulin and antireceptor antibodies, responded normally to both spermine and vitamin K(5), agents that stimulate glucose metabolism independently of the insulin receptor. These data suggest that prolonged or continuous occupancy of the insulin receptor by a ligand, in this case antireceptor antibodies, does not produce a continuous biological response. Instead, there is desensitization at some early step in the pathway for insulin action. These observations have important implications with respect to the mechanism of insulin action and to other situations in which there is long-term exposure of cells to antibodies that react with membrane components.

Adipose Tissue↗

Two-dimensional electrophoretic analyses of proteins synthesized during differentiation of 3T3-L1 preadipocytes.

The changes in protein composition and cell surface proteins that occur during the adipocyte conversion of 3T3-L1 preadipocytes were monitored by two-dimensional polyacrylamide gel electrophoresis folowing incubation of cells with [35S]methionine for periods of 3 and 24 h. Alterations in the biosynthesis of more than 30 cytoplasmic proteins, 9 non-histone, chromosome-associated proteins, and 24 membrane proteins, were detected. Although the methodological limitations of the electrophoretic systems employed result in an underestimate of the total number of differences, the alterations observed exceed the enzyme changes known to occur during differentiation of these cells. One major alteration occurring during differentiation is a decrease in the content of a protein whose position following two-dimensional electrophoresis tentatively identified it as actin. A fall in actin content accompanying adipocyte conversion was confirmed by direct analysis of the DNase 1 inhibitory activity in homogenates prepared from cells during the course of differentiation. Studies of cell surface proteins by lactoperoxidase-catalyzed iodination reveal a number of changes during differentiation including an increase in a polypeptide(s) in the molecular weight range of 16,500 to 18,500, a decrease in at least four proteins of molecular weights greater than 100,000, and in a protein of molecular weight 95,000.

Actins↗

Insulin-stimulated protein phosphorylation in 3T3-L1 preadipocytes.

A protein of molecular weight 31,000 became labeled with 32P within 5 min after addition of insulin to differentiated 3T3-L1 preadipocytes previously incubated for 55 min with 32Pi. The effect was mimicked by antisera directed against the insulin receptor and was eliminated by anti-insulin antiserum. Incorporation of 32P into this protein was more than 20-fold greater in insulin-treated cells than in cells not exposed to the hormone. At concentrations greater than required with insulin, epidermal growth factor and serum (1-5%) also stimulated phosphorylation whereas 1-isoproterenol, a beta-adrenergic agonist that increases intracellular accumulation of cyclic AMP, was without effect. The 31,000-dalton protein has been tentatively identified as ribosomal protein S6 by two-dimensional polyacrylamide gel electrophoresis. Incorporation of 32P into S6 could be detected within the same time period (5 min) and at the same insulin concentrations (0.1-1.0 nM) as are required to stimulate hexose uptake in both 3T3-L1 cells and mature mammalian adipocytes. The mechanism by which this phosphorylation either mediates or reflects the intracellular actions of insulin remains to be elucidated.

Adipose Tissue↗

Differentiation of ob 17 preadipocytes to adipocytes. Effect of insulin on the levels of insulin receptors and on the transport of alpha-aminoisobutyrate.

Cells of a clonal cell line (ob 17) isolated from the epididymal fat pad of ob/ob mouse possess insulin receptors. Their number was increased 1.5-fold after growth arrest, with no significant change in the Kd values of the "high affinity" sites determined by extrapolation of the high affinity portion of the curvilinear Scatchard plots. With chronic insulin exposure for 3 to 11 days after confluence, ob 17 cells showed a decrease in insulin receptor concentrations from 8,000 to 1,600 high affinity sites/cell (Kd from 0.45 to 1.10(-9) M) while similar levels of "low affinity" sites were found (80,000 to 100,000 sites/cell; Kd from 10(-8) to 3 x 10(-8) M). The loss of the high affinity binding sites is accompanied by the disappearance of the stimulatory effect by insulin of alpha-aminoisobutyrate uptake. Therefore, in contrast to 3T3-L1 fibroblasts, the ob 17 cells present, in culture, a self-modulation of insulin receptors and a loss of insulin sensitivity after chronic exposure to insulin.

Adipose Tissue↗

Tunicamycin-mediated depletion of insulin receptors in 3T3-L1 adipocytes.

Tunicamycin, an antibiotic that inhibits protein glycosylation, elicited a rapid depletion of insulin binding activity at the surface of 3T3-L1 adipocytes. Disappearance of insulin receptors occurred more rapidly in the presence of tunicamycin than when protein synthesis was inhibited by cycloheximide and was accompanied by a diminution in sensitivity of the adipocytes to the acute effects of insulin and anti-insulin receptor antibody on hexose uptake and metabolism.

Adipose Tissue↗