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Simultaneous formation of native ribonuclease and proinsulin from their mixed S-sulfonated derivatives by protein disulfide isomerase.

Xuan‐Chuan Yu, Chen‐Lu Tsou

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Abstract

Although the formation of native disulfide bonds of a protein from randomly linked disulfides by protein disulfide isomerase has been extensively studied, the possibility of simultaneous formation of the native proteins from a mixture has not been examined. It is shown in this paper that native ribonuclease and proinsulin can be nearly quantitatively formed by protein disulfide isomerase from a mixture of their S-sulfonated derivatives independent of the presence of each other.

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Although the formation of native disulfide bonds of a protein from randomly linked disulfides by protein disulfide isomerase has been extensively studied, the possibility of simultaneous formation of the native proteins from a mixture has not been examined. It is shown in this paper that native ribonuclease and proinsulin can be nearly quantitatively formed by protein disulfide isomerase from a mixture of their S-sulfonated derivatives independent of the presence of each other.

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Available abstract

Although the formation of native disulfide bonds of a protein from randomly linked disulfides by protein disulfide isomerase has been extensively studied, the possibility of simultaneous formation of the native proteins from a mixture has not been examined. It is shown in this paper that native ribonuclease and proinsulin can be nearly quantitatively formed by protein disulfide isomerase from a mixture of their S-sulfonated derivatives independent of the presence of each other.

Key concepts: Protein disulfide-isomerase, Ribonuclease, Disulfide bond, Chemistry, Proinsulin, Biochemistry, Isomerase, Native state

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Simultaneous formation of native ribonuclease and proinsulin from their mixed S-sulfonated derivatives by protein disulfide isomerase. — Research Paper | ScholarLens