Studies on Ribonuclease S. I. Limited Carboxypeptidase Degradation of Ribonuclease S-protein and Ribonuclease S-peptide: Effects of Changes in Primary Structure on Enzymic Activity.
نویسندگان
چکیده
Specific regions of the polypeptide sequence of pancreatic ribonuclease have been altered by chemical modification and by limited proteolytic digestion in attempts to implicate specific covalent portions of the molecule in the structure and stabilization of the active center. Digestion of the native molecule with trypsin at elevated temperatures has been shown to remove portions of the chain with only partial inactivation (1). Conversely, it has been possible to cause total inactivation of the enzyme through removal of the COOH-terminal tetrapeptide sequence, Asp-Ala-Ser-Val, by pepsin (2) or the 20-amino acid fragment at the NHt-terminal end of the molecule by treatment with subtilisin (3). The present studies were designed to analyze the specific roles of individual amino acid residues within the essential NH,and COOH-terminal regions of ribonuclease. In contrast to native RNase A (4), RNase S and its separated components, RNase S-protein and RNase S-peptide, are susceptible to extensive digestion by carboxypeptidase. The experiments described below show that changes in the conformation and the enzymic function of the RNase S derivatives produced can be related to the removal of individual amino acid residues.
منابع مشابه
Reconstitution of fully active RNase S by carboxypeptidase-degraded RNase S-peptide.
In attempting to relate the covalent structure of ribonuclease to its enzymic activity, controlled proteolytic degradation is a useful approach. Although native ribonuclease is markedly resistant to a variety of proteolytic enzymes, the separated components of ribonuclease S (1, 2), S-peptide, and S-protein, are extensively degraded by carboxypeptidase. Previous studies (3) on the sequence of a...
متن کاملStudies on Ribonuclease S
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The proteolysis of bovine pancreatic ribonuclease by subtilisin has been shown to involve the formation of an enzymically active intermediate which is further degraded to inactive products (1, 2). This paper describes the preparation of the modified active ribonuclease, RNase (S)l and its fractionation into two components, a peptide (S-peptide) and a protein (S-protein). Neither S-peptide nor S...
متن کاملThe Preparation of Subtilisin-modified Ribonuclease and the Separation of the Peptide and Protein Components*
The proteolysis of bovine pancreatic ribonuclease by subtilisin has been shown to involve the formation of an enzymically active intermediate which is further degraded to inactive products (1, 2). This paper describes the preparation of the modified active ribonuclease, RNase (S)l and its fractionation into two components, a peptide (S-peptide) and a protein (S-protein). Neither S-peptide nor S...
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Bovine pancreatic ribonuclease has been studied as the substrate of a number of proteolytic enzymes. In the native state it is completely resistant to trypsin and chymotrypsin (1, 2), but denaturation by chemical (3) or physical (4, 5) means induces susceptibility to these enzymes. Ribonuclease is! however, susceptible to attack by a number of other proteases. Subtilisin has been shown to cause...
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ورودعنوان ژورنال:
- The Journal of biological chemistry
دوره 239 شماره
صفحات -
تاریخ انتشار 1964