Abstract
Hepatic insulin-like growth factor binding protein (IGFBP) expression is controlled by diverse factors including thyroid hormone, which enhances IGFBP-4 production in hepatocytes. In the present work, we have investigated whether hepatic IGFBP-4 expression is regulated by retinoic acid (RA), which acts via nuclear receptors belonging to the steroid/thyroid hormone receptor superfamily. Primary cultures of adult rat hepatocytes were incubated with two natural stereoisomers of RA, all-trans RA and 9-cis RA (atRA and 9cRA), and with the synthetic RA receptor (RAR)-selective agonist TTNPB. IGFBP-4 mRNA abundance was measured by Northern blot and protein production was evaluated by Ligand blot on hepatocyte-conditioned culture media. Our results indicate that atRA, 9cRA, and TTNPB increase IGFBP-4 expression by cultured hepatocytes, both at the mRNA and protein level. The RARs play a definite role in this regulation, which is independent from ongoing protein synthesis but dependent on active transcription. AtRA and thyroid hormone act synergistically in increasing hepatic IGFBP-4 expression. Our data establish a role for hormonal factors such as thyronines and retinoids in regulating the hepatic IGF system directly at the IGFBP-4 level.
Key words
Retinoids - IGF - Liver - Nuclear receptors
References
1
Jones J I, Clemmons D R.
Insulin-like growth factors and their binding proteins: biological actions.
Endocrine Reviews.
1995;
16
3-34
2
Rechler M M, Clemmons D R.
Regulatory actions of insulin-like growth factor-binding proteins.
Trends in Endocrinology and Metabolism.
1998;
9
176-183
3
Ferry R J, Katz L E, Grimberg A, Cohen P, Weinzimer S A.
Cellular actions of insulin-like growth factor binding proteins.
Hormone and Metabolic Research.
1999;
31
192-202
4
Firth S M, Baxter R C.
Cellular actions of the insulin-like growth factor binding proteins.
Endocrine Reviews.
2002;
23
824-54
5
Bach L A, Rechler M M.
Insulin-like growth factor binding proteins.
Diabetes review.
1995;
3
38-61
6
Boni-Schnetzler M, Schmid C, Mary J L, Zimmerli B, Meier P J, Zapf J, Schwander J, Froesch E R.
Insulin regulates the expression of the insulin-like growth factor binding protein 2 mRNA in rat hepatocytes.
Molecular Endocrinology.
1990;
4
1320-1326
7
Scharf J G, Ramadori G, Braulke T, Hartmann H.
Synthesis of insulin-like growth factor binding proteins and of the acid-labile subunit in primary cultures of rat hepatocytes, of Kupffer cells, and in cocultures: regulation by insulin, insulin-like growth factor, and growth hormone.
Hepatology.
1996;
23
818-827
8
Scott C D, Baxter R C.
Synthesis of the acid-labile subunit of the growth hormone-dependent insulin-like growth factor binding protein complex by rat hepatocytes in culture.
Biochemical Journal.
199;
275
441-446
9
Takenaka A, Miura Y, Mori M, Hirosawa M, Kato H, Noguchi T.
Distribution of messenger RNAs of insulin-like growth factor (IGF)-binding proteins-1 and -3 between parenchymal and nonparenchymal cells in rat liver.
Agricultural and Biological Chemistry.
1991;
4
1191-1193
10
Zimmermann E M, Li L, Hoyt E C, Pucilowska J B, Lichtman S, Lund P K.
Cell-specific localization of insulin-like growth factor binding protein mRNAs in rat liver.
American Journal of Physiology Gastrointestinal and Liver Physiology.
2000;
278
G447-G457
11
Butler A A, Le R oith.
Control of growth by the somatotropic axis: growth hormone and the insulin-like growth factors have related and independent roles.
Annual Review of Physiology.
2001;
63
141-164
12
Cohick W S, Clemmons D R.
The insulin-like growth factors.
Annual Review of Physiology.
1993;
55
131-153
13
Fernandez-Celemin L, Thissen J P.
Interleukin-6 stimulates hepatic insulin-like growth factor binding protein-4 messenger ribonucleic acid and protein.
Endocrinology.
2001;
142
241-248
14
Scharf J G, Braulke T, Hartmann H, Ramadori G.
Regulation of the components of the 150 kDa IGF binding protein complex in cocultures of rat hepatocytes and Kupffer cells by 3",5"-cyclic adenosine monophosphate.
Journal of Cellular Physiology.
2001;
186
425-436
15
Demori I, Bottazzi C, Voci A, Gallo G, Scharf J G, Fugassa E.
Tri-iodothyronine increases insulin-like growth factor binding protein-4 expression in rat hepatocytes.
Journal of Endocrinology.
1997;
154
155-165
16
Voci A, Demori I, Bottazzi C, Fugassa E.
Regulation of renal growth and IGFBP-4 expression by triiodothyronine during rat development.
Hormone and Metabolic Research.
2001;
33
256-262
17
Zhang J, Lazar M A.
The mechanism of action of thyroid homones.
Annual Review of Physiology.
2000;
62
439-466
18
Chambon P.
A decade of molecular biology of retinoic acid receptors.
FASEB Journal.
1996;
10
940-954
19
Rowe A.
Retinoid X Receptors.
International Journal of Biochemistry and Cell Biology.
1997;
2
275-278
20
Ulven S M, Natarajan V, Holven K B, Lovdal T, Berg T, Blomhoff R.
Expression of retinoic acid receptor and retinoid X receptor subtypes in rat liver cells: implication for retinoid signalling in parenchymal, endothelial, Kupffer and stellate cells.
European Journal of Cell Biology.
1998;
77
111-116
21
Ohmura T, Ledda C olumbano, Columbano A, Katyal S L, Locker J, Shinozuka H.
9-cis retinoic acid is a direct hepatocyte mitogen in rats.
Life Sciences.
1996;
58
PL 211-216
22
Francavilla A, Carr B I, Azzarone A, Polimeno L, Wang Z, van Thiel D H, Subbotin V, Prelich J G, Starzl T E.
Hepatocyte proliferation and gene expression induced by triiodothyronine in vivo and in vitro.
Hepatology.
1994;
20
1237-1241
23
Schmid C h, Schlapfer I, Waldvogel M, Meier P J, Schwander J, Boni-Schnetzler M, Zapf J, Froesch E R.
Differential regulation of insulin-like growth factor binding protein (IGFBP)-2 mRNA in liver and bone cells by insulin and retinoic acid in vitro.
FEBS Letters.
1992;
303
205-209
24
Andreatta V LS, Hembree J R, Eckert R L.
Regulation of insulin-like growth factor 1 binding protein 3 levels by epidermal growth factor and retinoic acid in cervical epithelial cells.
Journal of Cellular Physiology.
1994;
160
265-274
25
Zhou Y, Mohan S, Linkhart T A, Baylink D J, Strong D D.
Retinoic acid regulates insulin-like growth factor-binding protein expression in human osteoblast cells.
Endocrinology.
1996;
137
975-983
26
Martin J L, Coverley J A, Baxter R C.
Regulation of immunoreactive insulin-like growth factor binding protein-6 in normal and trasformed human fibroblast.
Journal of Biological Chemistry.
1994;
269
11 470-11 477
27
Chambery D, de Gallè B, Babajko S.
Retinoic acid stimultes IGF binding protein (IGFBP)-6 and depresses IGFBP-2 and IGFBP-4 in SK-N-SH human neuroblastoma cells.
Journal of Endocrinology.
1998;
159
227-232
28
Fugassa E, Gallo G, Voci A, Cordone A.
RNA synthesis in primary cultures of adult rat hepatocytes.
In Vitro.
1983;
19
299-306
29
Chomczynski P, Sacchi N.
Single-step method of RNA isolation by acid guanidinium thiocyanate phenol-chloroform extraction.
Analytical Biochemistry.
1987;
162
156-159
30
Shimasaki S, Uchiyama F, Shimonaka M, Ling N.
Molecular cloning of cDNAs encoding a novel insulin-like growth factor-binding protein from rat and human.
Molecular Endocrinology.
1990;
4
1451-1458
31
Chan Y-L, Gutell R, Noller H F, Wool I G.
The nucleotide sequence of a rat 18 S ribosomal ribonucleic acid gene and a proposal for the secondary structure of 18S ribosomal ribonucleic acid.
Journal of Biological Chemistry.
1984;
259
224-230
32 Sambrook J, Fritsch E F, Miniatis T. Molecular Cloning: A Laboratory Manual, edn 2. Cold Spring Harbor, New York; Cold Spring Harbor Laboratory Press 1989
33
Hossenlopp P, Seurin D, Segovia-Quinson B, Hardouin S, Binoux M.
Analysis of serum insulin-like growth factor binding proteins using Western blotting: use of the method of titration of the binding proteins and competitive binding studies.
Analytical Biochemistry.
1986;
154
138-143
34
Chen Y, Arnqvist H J.
Differential regulation of insulin-like growth factor binding protein-2 and -4 mRNA in muscle tissues and liver by diabetes or fasting.
Journal of Endocrinology.
1994;
143
235-242
35
Demori I, Balocco S, Voci A, Fugassa E.
Increased insulin-like growth factor binding protein-4 expression after partial hepatectomy in the rat.
American Journal of Physiology Gastrointestinal and Liver Physiology.
2000;
278
G384-G389
36
Means A L, Gudas L J.
The roles of retinoids in vertebrate development.
Annual Review of Biochemistry.
1995;
64
201-33
37
Napoli J L, Posch K P, Fiorella P D, Boerman M H.
Physiological occurrence, biosynthesis and metabolism of retinoic acid: evidence for roles of cellular retinol-binding protein (CRBP) and cellular retinoic acid-binding protein (CRABP) in the pathway of retinoic acid homeostasis.
Biomedicine and Pharmacotherapy.
1991;
45
131-143
38
Glantschnig H, Varga F, Klaushofer K.
Thyroid hormone and retinoic acid induce the synthesis of insulin-like growth factor-binding protein-4 in mouse osteoblastic cells.
Endocrinology.
1996;
137
281-286
39
Bardi G, Bottazzi C, Demori I, Palmero S.
Thyroid hormone and retinoic acid induce the synthesis of insulin-like growth factor-binding protein-4 in prepubertal pig Sertoli cells.
European Journal of Endocrinology.
1999;
141
637-643
40
Adamo M L, Shao Z M, Lanau F, Chen J C, Clemmons D R, Roberts C TJr, LeRoith D, Fontana J A.
Insulin-like growth factor-I (IGF-I) and retinoic acid modulation of IGF-binding proteins (IGFBPs): IGFBP-2, -3, and -4 gene expression and protein secretion in a breast cancer cell line.
Endocrinology.
1992;
131
1858-1866
41 Mangelsdorf D J, Umesono K, Evans R M. The retinoid receptors. In: Sporn MB, Roberts AB, Goodmann DS (eds) The Retinoids. New York; Raven Press Ltd 1994: 319-349
42
Kim D G, Lee D Y, Cho B H, You K R, Kim M Y, Ahn D S.
Down-regulation of insulin-like growth factor binding proteins and growth modulation in hepatoma cells by retinoic acid.
Hepatology.
1999;
29
1091-1098
43
Murakami K, Matsuura T, Hasumura S, Nagamori S, Yamada Y, Saiki I.
Involvement of insulin-like growth factor binding protein-3 in the retinoic acid receptor-α-mediated inhibition of hepatocellular carcinoma cell proliferation.
Cancer Letters.
2000;
151
63-70
44
Damon S E, Maddison L, Ware J L, Plymate S R.
Overexpression of an inhibitory insulin-like growth factor binding protein (IGFBP), IGFBP-4, delays onset of prostate tumor formation.
Endocrinology.
1998;
139
3456-3464
45
Singh P, Dai B, Dhruva B, Widen S G.
Episomal expression of sense and antisense insulin-like growth factor (IGF)-binding protein-4 complementary DNA alters the mitogenic response of a human colon cancer cell line (HT-29) by mechanisms that are independent of and dependent upon IGF-I.
Cancer Research.
1994;
54
6563-6570
46 Blaner W S, Olson J A. Retinol and retinoic acid metabolism. In: Sporn MB, Roberts AB, Goodmann DS (eds) The Retinoids. New York; Raven Press Ltd 1994: 229-255
47
Zindy F, Lamas E, Schmidt S, Kirn A, Brechot C.
Expression of insulin-like growth factor II (IGF-II) and IGF-II, IGF-I and insulin receptors mRNAs in isolated non-parenchymal rat liver cells.
Journal of Hepatology.
1992;
14
30-34
48
Claussen M, Kubler B, Wendland M, Neifer K, Schmidt B, Zapf J, Braulke T.
Proteolysis of insulin-like growth factors (IGF) and IGF binding proteins by cathepsin D.
Endocrinology.
1997;
138
3797-3803
49
Mohan S, Bautista C M, Wergedal J, Baylink D J.
Isolation of inhibitory insulin-like growth factor (IGF) binding protein from bone cell-conditioned medium: a potential local regulator of IGF action.
Proceedings of the National Academy of Sciences of the USA.
1989;
86
8338-8342
50
Ui M, Shimonaka M, Shimasaki S, Ling N.
An insulin-like growth factor-binding protein in ovarian follicular fluid blocks follicle-stimulating hormone-stimulated steroid production by ovarian granulosa cells.
Endocrinology.
1989;
125
912-916
51
Rees C, Clemmons D R, Horvitz G D, Clarke J B, Busby W H.
A protease-resistant form of insulin-like growth factor (IGF) binding protein 4 inhibits IGF-1 actions.
Endocrinology.
1998;
139
4182-4188
52
Schneider M R, Lahm H, Wu M, Wolf E.
Transgenic mouse models for studying the functions of insulin-like growth factor-binding proteins.
FASEB Journal.
2000;
14
629-640
53
Miyakoshi N, Richman C, Qin X, Baylink D J, Mohan S.
Effects of recombinant insulin-like growth factor-binding protein-4 on bone formation parameters in mice.
Endocrinology.
1999;
140
5719-5728
E. Fugassa
Dipartimento di Biologia Sperimentale · Ambientale ed Applicata (DIBISAA) · Sezione di Fisiologia Generale e Comparata · Università degli Studi di Genova
Corso Europa 26 · 16132 Genova · Italy ·
Telefon: +39(010)3538243
Fax: +39(010)3538267
eMail: fugassae@unige.it