1976The Journal of BiochemistryRequires access

Affinity Chromatography of Trypsin and Related Enzymes II. An Affinity Adsorbent Containing Glycylglycyl-L-arginine1

Takashi Kumazaki, Ken‐ichi Kasai, Shin‐ichi Ishii

Open publisher page 10 citations

Abstract

An affinity adsorbent for trypsin [EC 3.4.21.4] (GGA Sepharose) was prepared. Glycylglycyl-L-arginine (GGA) was synthesized by a simple procedure and was immobilized on agarose gel. This adsorbent proved to have essentially the same characteristics as AP Sepharose, which is an affinity adsorbent containing tryptic peptides of protamine (1). GGS Sepharose was specific for native trypsin and had a stronger affinity at lower pH's (6-5) than at the optimum pH of trypsin action (8.2). It also proved to be suitable for analytical experiments because of its relatively weak affinity. By comparison of the elution profiles of trypsin from GGA Sepharose under various conditions, the nature of the interaction of trypsin with the adsorbent could be studied. It was found that alpha- and beta-trypsin could be distinguished. In the presence of arginine and N-substitute arginines, the elution of trypsin was accelerated. From the extents of the accelerating effects, the affinities of these compouunds could be compared.

About this research paper

What this paper is about

An affinity adsorbent for trypsin [EC 3.4.21.4] (GGA Sepharose) was prepared. Glycylglycyl-L-arginine (GGA) was synthesized by a simple procedure and was immobilized on agarose gel. This adsorbent proved to have essentially the same characteristics as AP Sepharose, which is an affinity adsorbent containing tryptic peptides of protamine (1). GGS Sepharose was specific for native trypsin and had a stronger affinity at lower pH's (6-5) than at the optimum pH of trypsin action (8.2). It also proved to be suitable for analytical experiments because of its relatively weak affinity. By comparison of the elution profiles of trypsin from GGA Sepharose under various conditions, the nature of the interaction of trypsin with the adsorbent could be studied. It was found that alpha- and beta-trypsin could be distinguished. In the presence of arginine and N-substitute arginines, the elution of trypsin was accelerated. From the extents of the accelerating effects, the affinities of these compouunds could be compared.

Why it matters

OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

An affinity adsorbent for trypsin [EC 3.4.21.4] (GGA Sepharose) was prepared. Glycylglycyl-L-arginine (GGA) was synthesized by a simple procedure and was immobilized on agarose gel. This adsorbent proved to have essentially the same characteristics as AP Sepharose, which is an affinity adsorbent containing tryptic peptides of protamine (1). GGS Sepharose was specific for native trypsin and had a stronger affinity at lower pH's (6-5) than at the optimum pH of trypsin action (8.2). It also proved to be suitable for analytical experiments because of its relatively weak affinity. By comparison of the elution profiles of trypsin from GGA Sepharose under various conditions, the nature of the interaction of trypsin with the adsorbent could be studied. It was found that alpha- and beta-trypsin could be distinguished. In the presence of arginine and N-substitute arginines, the elution of trypsin was accelerated. From the extents of the accelerating effects, the affinities of these compouunds could be compared.

Key concepts: Trypsin, Affinity chromatography, Chemistry, Sepharose, Agarose, Chromatography, Elution, Adsorption

Related papers

Back to paper searchBrowse research topicsOriginal source
Affinity Chromatography of Trypsin and Related Enzymes II. An Affinity Adsorbent Containing Glycylglycyl-L-arginine1 — Research Paper | ScholarLens