N-TERMINAL ARGINYLATION AND UBIQUITIN-MEDIATED PROTEOLYSIS IN NERVE REGENERATION

被引:25
作者
CHAKRABORTY, G
INGOGLIA, NA
机构
[1] UMDNJ,NEW JERSEY MED SCH,DEPT PHYSIOL,185 S ORANGE AVE,NEWARK,NJ 07103
[2] UMDNJ,NEW JERSEY MED SCH,DEPT NEUROSCI,NEWARK,NJ 07103
关键词
TRANSFER RNA; N-TERMINAL ARGINYLATION; UBIQUITINATION; PROTEOLYSIS; NERVE REGENERATION; SCIATIC NERVE; OPTIC NERVE;
D O I
10.1016/0361-9230(93)90276-H
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Damaged sciatic nerves of rats respond to injury within minutes by activating reactions that result in the transfer RNA-mediated posttranslational addition of several amino acids to a variety of cytoplasmic proteins. For the most part, the site of addition of individual amino acids and the identity of the target proteins is not known. However, arginine, one of the amino acids added in greatest amounts, has been shown to be covalently linked to the N-terminus of acceptor proteins. In other simpler eukaryotic cells, N-terminal arginylation results in degradation of the arginylated proteins via the ubiquitin proteolytic pathway. Recent experiments have shown that when proteins, obtained from sciatic nerves 2 h after injury, are arginylated in vitro, they form high molecular weight aggregates. Other experiments have shown that these arginylated proteins are immunoreactive to a monoclonal antibody to ubiquitin. These findings suggest that following injury to the sciatic nerve, proteins which are arginylated are candidates for ubiquitin mediated proteolysis. Injury to a nerve incapable of regeneration without experimental intervention, the rat optic nerve, does not result in activation of the arginylation reactions until 6 days following injury. Based on the temporal differences in response to injury of sciatic and optic nerves (2 h vs. 6 days), we propose that the lack of arginylation following injury to the CNS is related to its inability to mount a regenerative response. The association of Arg modification of damaged proteins with the ubiquitin-mediated degradation of those proteins, suggests that regenerative failure in the CNS may be related, in part, to a failure to degrade intracellular proteins at the site of injury.
引用
收藏
页码:439 / 445
页数:7
相关论文
共 45 条
[1]  
Aguayo A.J., 1985, SYNAPTIC PLASTICITY, P457
[2]   THE DEGRADATION SIGNAL IN A SHORT-LIVED PROTEIN [J].
BACHMAIR, A ;
VARSHAVSKY, A .
CELL, 1989, 56 (06) :1019-1032
[3]   INVIVO HALF-LIFE OF A PROTEIN IS A FUNCTION OF ITS AMINO-TERMINAL RESIDUE [J].
BACHMAIR, A ;
FINLEY, D ;
VARSHAVSKY, A .
SCIENCE, 1986, 234 (4773) :179-186
[4]  
BALZI E, 1990, J BIOL CHEM, V265, P7464
[5]   SYNAPTIC MACROMOLECULES - IDENTIFICATION AND METABOLISM [J].
BARONDES, SH .
ANNUAL REVIEW OF BIOCHEMISTRY, 1974, 43 :147-168
[6]   SOLUBLE PREPARATION FROM RAT-BRAIN THAT INCORPORATES INTO ITS OWN PROTEINS [C-14]ARGININE BY A RIBONUCLEASE-SENSITIVE SYSTEM AND [C-14]TYROSINE BY A RIBONUCLEASE-INSENSITIVE SYSTEM [J].
BARRA, HS ;
RODRIGUEZ, JA ;
ARCE, CA ;
CAPUTTO, R .
JOURNAL OF NEUROCHEMISTRY, 1973, 20 (01) :97-108
[7]   PRESENCE OF TRANSFER-RNA IN AXOPLASM OF SQUID GIANT-AXON [J].
BLACK, MM ;
LASEK, RJ .
JOURNAL OF NEUROBIOLOGY, 1977, 8 (03) :229-237
[8]  
CAJAL SR, 1989, RECOLLECTIONS LIFE, P543
[9]   ANTIBODY AGAINST MYELIN-ASSOCIATED INHIBITOR OF NEURITE GROWTH NEUTRALIZES NONPERMISSIVE SUBSTRATE PROPERTIES OF CNS WHITE MATTER [J].
CARONI, P ;
SCHWAB, ME .
NEURON, 1988, 1 (01) :85-96
[10]   AMINO-ACID MODIFICATION OF PROTEINS IN REGENERATING SCIATIC-NERVES OF RATS [J].
CHAKRABORTY, G ;
YU, M ;
LUO, D ;
STURMAN, JA ;
INGOGLIA, NA .
JOURNAL OF NEUROSCIENCE RESEARCH, 1990, 25 (04) :503-510