Center for Phage Technology, Department of Biochemistry and Biophysics, Texas A&M University, College Station, Texas, USA.
Mol Microbiol. 2013 Apr;88(1):35-47. doi: 10.1111/mmi.12167. Epub 2013 Feb 28.
The λ Rz and Rz1 proteins are the subunits of the spanin complex, required for the disruption of the outer membrane during host lysis. Rz, the inner membrane or i-spanin, has a largely alpha-helical periplasmic domain, whereas Rz1, the outer membrane or o-spanin, has a 25% proline content with no predicted secondary structure. We report that both Rz and Rz1 accumulate as homodimers covalently linked by intermolecular disulfide bonds involving all three Cys residues, two in Rz and one in Rz1. Moreover, of these three intermolecular disulfides, spanin function requires the presence of at least one of the two linkages nearest the Rz-Rz1 C-terminal interaction domains; i.e. either the Rz1-Rz1 disulfide or the distal Rz-Rz disulfide link. In a dsbC host, but not in dsbA or dsbA dsbC hosts, formation of the covalent homodimers of Rz is severely reduced and outer membrane disruption is significantly delayed, suggesting that the spanin pathway normally proceeds through DsbA-mediated formation of an intramolecular disulfide in Rz. In contrast, efficient formation of the Rz1-Rz1 disulfide requires DsbA. Finally, Dsb-independent formation of the covalent homodimer of either subunit requires the presence of the other, presumably as a template for close apposition of the thiols.
λ Rz 和 Rz1 蛋白是 spanin 复合物的亚基,对于宿主裂解过程中外膜的破坏是必需的。Rz,即内膜或 i-spanin,具有一个主要由α-螺旋组成的周质域,而 Rz1,即外膜或 o-spanin,具有 25%的脯氨酸含量,没有预测的二级结构。我们报告说,Rz 和 Rz1 都以通过涉及所有三个半胱氨酸残基的分子间二硫键共价连接的同源二聚体形式积累,其中两个在 Rz 中,一个在 Rz1 中。此外,在这三个分子间二硫键中,spanin 功能需要至少存在两个靠近 Rz-Rz1 C 末端相互作用域的连接之一;即 Rz1-Rz1 二硫键或远端 Rz-Rz 二硫键连接。在 dsbC 宿主中,但不在 dsbA 或 dsbA dsbC 宿主中,Rz 的共价同源二聚体的形成严重减少,并且外膜破坏显著延迟,表明 spanin 途径通常通过 DsbA 介导的 Rz 中形成的分子内二硫键进行。相比之下,Rz1-Rz1 二硫键的有效形成需要 DsbA。最后,无论哪个亚基的共价同源二聚体的 Dsb 独立形成都需要另一个亚基的存在,大概是作为紧密接近巯基的模板。