Glucocorticoids modulate the biosynthesis and processing of pro-thyrotropin releasing-hormone (proTRH)

被引:13
作者
Bruhn, TO
Huang, SS
Vaslet, C
Nillni, AA
机构
[1] Brown Univ, Rhode Isl Hosp, Sch Med,Dept Med, Div Endocrinol, Providence, RI 02903 USA
[2] Univ Hamburg UKE, Inst Zellbiochem & Klin Neurobiol, D-22529 Hamburg, Germany
关键词
AtT20; cells; glucocorticoids; peptide biosynthesis; proTRH; TRH;
D O I
10.1385/ENDO:9:2:143
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The thyrotropin- (TRH) releasing hormone precursor (26 kDa) undergoes proteolytic cleavage at either of two sites, generating N-terminal 15 kDa/9.5 kDa or C-terminal 16.5/10 kDa intermediate forms that are processed further to yield five copies of TRH-Gly and seven non-TRH peptides. Glucocorticoids (Ccc) have been shown to enhance TRH gene expression in three different cell systems in vitro, an effect that occurs, at least in part, through transcriptional activation. Although this implies that an increase of TRH prohormone biosynthesis would take place, this had not been demonstrated as yet. We report here that the synthetic glucocorticoid dexamethasone (Dex) substantially elevated the de novo biosynthesis of the intact 26-kDa TRH prohormone and its intermediate products of processing in cultured anterior pituitary cells, an observation that is consistent with an overall upregulation of both the biosynthesis and degradation of the TRH precursor. We reasoned that Ccc may act not only at the transcriptional, but also at the translational/posttranslational level. To address this question we chose a different cell system, AtT20 cells transfected with a cDNA encoding preproTRH. Since TRH gene expression in these cells is driven by the CMV-IE promoter and not by an endogenous "physiological" promoter, these cells provide an ideal model to study selectively the effects of Ccc on the translation and posttranslational processing of proTRH without interference fr om a direct transcriptional activation of the TRH gene. Dex caused a significant 75.7% increase in newly synthesized 26-kDa TRH prohormone, suggesting that the glucocorticoid raised the translation rate. We then demonstrated that Dex treatment accelerated TRH precursor processing. Of interest, processing of the N- vs the C-terminal intermediate was influenced differentially by the glucocorticoid. Although the N-terminal intermediate product of processing accumulated, the C-terminal intermediate was degraded more rapidly. Consistent with these observations was the finding that the intracellular accumulation of the N-terminally derived peptide preproTRH(25-50) was enhanced, but levels of the C-terminally derived peptide preproTRH(208-255) were reduced. Accumulation of TRH itself, whose five copies are N- and C-terminally derived, was also enhanced. We conclude that Gee induce changes in the biosynthesis and processing of proTRH by increasing the translation rate and by differentially influencing the processing of N- vs C-terminal intermediates of the precursor molecule. These effects of Ccc at the translational and posttranslational levels result in an increase in TRH production accompanied by differential effects on the accumulation of N- and C-terminal non-TRH peptides.
引用
收藏
页码:143 / 152
页数:10
相关论文
共 53 条
[11]   THE EFFECT OF GLUCOCORTICOID ON THE SUBCELLULAR-LOCALIZATION, OLIGOMERIZATION, AND PROCESSING OF MOUSE MAMMARY-TUMOR VIRUS ENVELOPE PROTEIN PRECURSOR-PR74 [J].
COREY, JL ;
STALLCUP, MR .
MOLECULAR ENDOCRINOLOGY, 1992, 6 (03) :450-458
[12]   DISTRIBUTION AND REGULATION OF THE PROHORMONE CONVERTASES PC1 AND PC2 IN THE RAT PITUITARY [J].
DAY, R ;
SCHAFER, MKH ;
WATSON, SJ ;
CHRETIEN, M ;
SEIDAH, NG .
MOLECULAR ENDOCRINOLOGY, 1992, 6 (03) :485-497
[13]   Intracellular sites of prothyrotropin-releasing hormone processing [J].
delaCruz, IP ;
Nillni, EA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (37) :22736-22745
[14]   BIOSYNTHESIS AND POSTTRANSLATIONAL PROCESSING OF THE NEUROTENSIN NEUROMEDIN-N PRECURSOR IN THE RAT MEDULLARY-THYROID CARCINOMA 6-23 CELL-LINE - EFFECT OF DEXAMETHASONE [J].
DENADAI, F ;
ROVERE, C ;
BIDARD, JN ;
LAUR, J ;
MARTINEZ, J ;
CUBER, JC ;
KITABGI, P .
ENDOCRINOLOGY, 1993, 132 (04) :1614-1620
[15]   GLUCOCORTICOID REGULATION OF RAT DIENCEPHALON ANGIOTENSINOGEN PRODUCTION [J].
DESCHEPPER, CF ;
FLAXMAN, M .
ENDOCRINOLOGY, 1990, 126 (02) :963-970
[16]   TRANSCRIPTION FACTOR INTERACTIONS - SELECTORS OF POSITIVE OR NEGATIVE REGULATION FROM A SINGLE DNA ELEMENT [J].
DIAMOND, MI ;
MINER, JN ;
YOSHINAGA, SK ;
YAMAMOTO, KR .
SCIENCE, 1990, 249 (4974) :1266-1272
[17]   GLUCOCORTICOID REGULATION OF PROTEIN PROCESSING AND COMPARTMENTALIZATION [J].
FIRESTONE, GL ;
PAYVAR, F ;
YAMAMOTO, KR .
NATURE, 1982, 300 (5889) :221-225
[18]   PROCESSING OF PROTHYROTROPIN-RELEASING HORMONE (PRO-TRH) BY BOVINE INTERMEDIATE LOBE SECRETORY VESICLE MEMBRANE PC1 AND PC2 ENZYMES [J].
FRIEDMAN, TC ;
LOH, YP ;
CAWLEY, NX ;
BIRCH, NP ;
HUANG, SS ;
JACKSON, IMD ;
NILLNI, EA .
ENDOCRINOLOGY, 1995, 136 (10) :4462-4472
[19]   THE STEROID-RECEPTOR SUPERFAMILY - MECHANISMS OF DIVERSITY [J].
FULLER, PJ .
FASEB JOURNAL, 1991, 5 (15) :3092-3099
[20]   GLUCOCORTICOID-REGULATED STABILITY OF A CONSTITUTIVELY EXPRESSED MOUSE MAMMARY-TUMOR VIRUS GLYCOPROTEIN [J].
GOODMAN, LJ ;
FIRESTONE, GL .
MOLECULAR ENDOCRINOLOGY, 1993, 7 (01) :94-103