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  2. A molecular redox switch on p21(ras). Structural basis for the nitric oxide-p21(ras) interaction

A molecular redox switch on p21(ras). Structural basis for the nitric oxide-p21(ras) interaction

  • J Biol Chem. 1997 Feb 14;272(7):4323-6. doi: 10.1074/jbc.272.7.4323.
H M Lander 1 D P Hajjar B L Hempstead U A Mirza B T Chait S Campbell L A Quilliam
Affiliations

Affiliation

  • 1 Department of Biochemistry, Cornell University Medical College.
Abstract

We have identified the site of molecular interaction between nitric oxide (NO) and p21(Ras) responsible for initiation of signal transduction. We found that p21(Ras) was singly S-nitrosylated and localized this modification to a fragment of p21(Ras) containing Cys118. A mutant form of p21(Ras), in which Cys118 was changed to a serine residue and termed p21(Ras)C118S, was not S-nitrosylated. NO-related species stimulated guanine nucleotide exchange on wild-type p21(Ras), resulting in an active form, but not on p21(Ras)C118S. Furthermore, in contrast to parental Jurkat T cells, NO-related species did not stimulate mitogen-activated protein kinase activity in cells transfected with p21(Ras)C118S. These data indicate that Cys118 is a critical site of redox regulation of p21(Ras), and S-nitrosylation of this residue triggers guanine nucleotide exchange and downstream signaling.

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