PRECURSOR POOLS OF PROTEIN-SYNTHESIS - A STABLE-ISOTOPE STUDY IN A SWINE MODEL

被引:128
作者
BAUMANN, PQ
STIREWALT, WS
OROURKE, BD
HOWARD, D
NAIR, KS
机构
[1] UNIV VERMONT,GEN CLIN RES CTR,DEPT MED,BURLINGTON,VT 05405
[2] UNIV VERMONT,GEN CLIN RES CTR,DEPT OBSTET & GYNECOL,BURLINGTON,VT 05405
来源
AMERICAN JOURNAL OF PHYSIOLOGY | 1994年 / 267卷 / 02期
关键词
AMINOACYL-TRANSFER RIBONUCLEIC ACID; AMINO ACIDS; TISSUE EXTRACTS;
D O I
10.1152/ajpendo.1994.267.2.E203
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The accuracy of using other free pools in lieu of tRNA for calculation of tissue protein synthesis in liver (L), skeletal muscle (SM), and heart (H) was assessed in six adult miniature swine using L-[1-C-13]leucine and L-[ring-H-2(5)]phenylalanine as tracers. L leucyl-tRNA enrichment was higher than arterial plasma leucine and ketoisocaproate (KIC) enrichments, and L phenylalanyl-tRNA enrichment was higher than arterial phenylalanine enrichment (P < 0.05). No such differences were noted in SM and H. Leucyland phenylalanyl-tRNA enrichments in L were best predicted by the respective amino acid enrichments in tissue fluid [TF; Leu: slope (m) = 0.954 +/- 0.035; Phe: m = 1.011 +/- 0.032] using linear regression analysis to determine the accuracy of the prediction, whereas plasma phenylalanine reasonably predicted phenylalanyl-tRNA (artery: m = 0.821 +/- 0.032; vein: m = 0.947 +/- 0.135). In SM, plasma KIC (artery: m = 0.846 +/- 0.046; vein: m = 0.881 +/- 0.043) and TF leucine (m = 0.788 +/- 0.034) predicted leucyl-tRNA with high accuracy. In H tissue, TF (m = 0.991 +/- 0.044) was the best predictor of leucyl-tRNA enrichment, whereas arterial phenylalanine (m = 0.912 +/- 0.015) was the most reliable predictor of phenylalanyl-tRNA enrichment. The relationships between aminoacyl-tRNA and other free pools in the same species under the same study conditions differ in different tissues. Use of KIC in lieu of leucyl-tRNA for calculating muscle protein synthesis is supported by this study.
引用
收藏
页码:E203 / E209
页数:7
相关论文
共 34 条
[1]   DETERMINATION OF AMINO-ACID PROFILES IN BIOLOGICAL SAMPLES BY GAS-CHROMATOGRAPHY [J].
ADAMS, RF .
JOURNAL OF CHROMATOGRAPHY, 1974, 95 (02) :189-212
[2]   INSULIN STIMULATION OF PROTEIN-SYNTHESIS IN CULTURED SKELETAL AND CARDIAC-MUSCLE-CELLS [J].
AIRHART, J ;
ARNOLD, JA ;
STIREWALT, WS ;
LOW, RB .
AMERICAN JOURNAL OF PHYSIOLOGY, 1982, 243 (01) :C81-C86
[3]  
AIRHART J, 1974, BIOCHEMISTRY-US, V140, P539, DOI 10.1042/bj1400539
[4]   HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHIC TECHNIQUE FOR NON-DERIVATIZED LEUCINE PURIFICATION - EVIDENCE FOR CARBON ISOTOPE FRACTIONATION [J].
BAUMANN, PQ ;
EBENSTEIN, DB ;
OROURKE, BD ;
NAIR, KS .
JOURNAL OF CHROMATOGRAPHY-BIOMEDICAL APPLICATIONS, 1992, 573 (01) :11-16
[5]   INABILITY TO STIMULATE SKELETAL-MUSCLE OR WHOLE-BODY PROTEIN-SYNTHESIS IN TYPE-1 (INSULIN-DEPENDENT) DIABETIC-PATIENTS BY INSULIN-PLUS-GLUCOSE DURING AMINO-ACID INFUSION - STUDIES OF INCORPORATION AND TURNOVER OF TRACER L-[1-C-13]LEUCINE [J].
BENNET, WM ;
CONNACHER, AA ;
SMITH, K ;
JUNG, RT ;
RENNIE, MJ .
DIABETOLOGIA, 1990, 33 (01) :43-51
[6]  
DODDS WJ, 1982, FED PROC, V41, P247
[7]   EQUILIBRATION OF LEUCINE BETWEEN THE PLASMA COMPARTMENT AND LEUCYL-TRANSFER RNA IN THE HEART, AND TURNOVER OF CARDIAC MYOSIN HEAVY-CHAIN [J].
EVERETT, AW ;
PRIOR, G ;
ZAK, R .
BIOCHEMICAL JOURNAL, 1981, 194 (01) :365-368
[8]   ANALYSIS OF (1-C13)LEUCINE AND (C-13)KIC IN PLASMA BY CAPILLARY GAS-CHROMATOGRAPHY MASS-SPECTROMETRY IN PROTEIN-TURNOVER STUDIES [J].
FORD, GC ;
CHENG, KN ;
HALLIDAY, D .
BIOMEDICAL MASS SPECTROMETRY, 1985, 12 (08) :432-436
[9]   REGULATION OF PROTEIN-SYNTHESIS AND DEGRADATION IN L8-MYOTUBES - EFFECTS OF SERUM, INSULIN AND INSULIN-LIKE GROWTH-FACTORS [J].
GULVE, EA ;
DICE, JF .
BIOCHEMICAL JOURNAL, 1989, 260 (02) :377-387
[10]   MEASUREMENT OF MUSCLE PROTEIN SYNTHETIC RATE FROM SERIAL MUSCLE BIOPSIES AND TOTAL-BODY PROTEIN TURNOVER IN MAN BY CONTINUOUS INTRAVENOUS-INFUSION OF L[ALPHA-15 N]LYSINE [J].
HALLIDAY, D ;
MCKERAN, RO .
CLINICAL SCIENCE AND MOLECULAR MEDICINE, 1975, 49 (06) :581-590