Takahashi M, Takano M, Asada K
J Biochem. 1981 Jul;90(1):87-94. doi: 10.1093/oxfordjournals.jbchem.a133472.
After Tris(hydroxymethyl)aminomethane[Tris buffer]-treatment cross-linking of the chloroplast thylakoid peptides of 11, 13, 18, 43, 55, and 87 kdaltons was observed on SDS-polyacrylamide gel electrophoresis. Tris-induced disulfide formation was suggested by the decrease of thiol groups of the chloroplast thylakoids in Tris medium at pHs above 8. In addition to the finding that Tris coordinates to Cu2+ in the forms of Tris-Cu2+ and Tris2-Cu2+ whose successive stability constants are 5.78 x 10(3) M-1 and 4.46 x 10(6) M-2, respectively, it was observed that Tris-Cu2+ complexes catalyze cysteine oxidation. Sinc release of copper from the chloroplast thylakoids is enhanced by increasing the concentration of Tris, oxidation of thiols by Tris-Cu2+ complexes formed in chloroplast thylakoids is a possible mechanism for the cross-linking of chloroplast thylakoid peptides.
在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳上观察到,经过三(羟甲基)氨基甲烷[Tris缓冲液]处理后,11、13、18、43、55和87千道尔顿的叶绿体类囊体肽发生了交联。在pH高于8的Tris介质中,叶绿体类囊体中硫醇基团的减少表明Tris诱导了二硫键的形成。除了发现Tris以Tris-Cu2+和Tris2-Cu2+的形式与Cu2+配位,其连续稳定常数分别为5.78×10³M⁻¹和4.46×10⁶M⁻²外,还观察到Tris-Cu2+络合物催化半胱氨酸氧化。由于增加Tris浓度会增强叶绿体类囊体中铜的释放,因此叶绿体类囊体中形成的Tris-Cu2+络合物对硫醇的氧化可能是叶绿体类囊体肽交联的一种机制。