Literature DB >> 8954155

Disulphide bonding in a stylar self-incompatibility ribonuclease of Nicotiana alata.

D Oxley1, A Bacic.   

Abstract

Many flowering plants have developed a self-incompatibility mechanism, which is controlled by a single polyallelic locus (the S-locus), to prevent inbreeding. The products of the S-locus in the styles of solanaceous plants are an allelic series of glycoproteins with RNase activity [McClure, B. A., Haring, V., Ebert, P. R., Anderson, M. A., Simpson, R. J., Sakiyama, F. & Clarke, A. E. (1989) Nature 342, 955-957]. These S-RNases show some amino-acid-sequence similarity with two fungal RNases (T2 and Rh), including the presence of two active-site His residues, which suggests a common three-dimensional structure. Disulphide bonding is important in the maintenance of the three-dimensional structure of the fungal RNases [Kurihara, H., Mitsui, Y., Ohgi, K., Irie, M., Mizuno, H. & Nakamura, T. (1992) FEBS Lett. 306, 189-192] and the S-RNases [Tsai, D. S., Lee, H.-S., Post, L. C., Kreiling, K. M. & Kao, T.-H. (1992) Sex. Plant Reprod. 5, 256-263]. We have used the S2-allele RNase of Nicotiana alata, which has nine Cys residues, to establish the pattern of disulphide bonding. The disulphide bonds Cys16-Cys21, Cys45-Cys94, Cys153-Cys182 and Cys165-Cys176 are consistent with the S2-RNase having a similar three-dimensional structure to RNase Rh. A free Cys residue (Cys95) adjacent to Cys45-Cys94 promotes a rapid specific disulphide migration when the protein is exposed to denaturing conditions.

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Year:  1996        PMID: 8954155     DOI: 10.1111/j.1432-1033.1996.0075r.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  4 in total

1.  Structural analysis and molecular model of a self-incompatibility RNase from wild tomato.

Authors:  S Parry; E Newbigin; D Craik; K T Nakamura; A Bacic; D Oxley
Journal:  Plant Physiol       Date:  1998-02       Impact factor: 8.340

2.  Identification and characterization of components of a putative petunia S-locus F-box-containing E3 ligase complex involved in S-RNase-based self-incompatibility.

Authors:  Zhihua Hua; Teh-Hui Kao
Journal:  Plant Cell       Date:  2006-10-06       Impact factor: 11.277

3.  RNase activity requires formation of disulfide bonds and is regulated by the redox state.

Authors:  Zhong Chen; Jun Ling; Daniel R Gallie
Journal:  Plant Mol Biol       Date:  2004-05       Impact factor: 4.335

4.  A novel motif in the NaTrxh N-terminus promotes its secretion, whereas the C-terminus participates in its interaction with S-RNase in vitro.

Authors:  Alejandra Avila-Castañeda; Javier Andrés Juárez-Díaz; Rogelio Rodríguez-Sotres; Carlos E Bravo-Alberto; Claudia Patricia Ibarra-Sánchez; Alejandra Zavala-Castillo; Yuridia Cruz-Zamora; León P Martínez-Castilla; Judith Márquez-Guzmán; Felipe Cruz-García
Journal:  BMC Plant Biol       Date:  2014-05-28       Impact factor: 4.215

  4 in total

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