Department of Biological Chemistry, University of Padua, Padua, Italy.
FEBS J. 2011 Apr;278(8):1223-31. doi: 10.1111/j.1742-4658.2011.08038.x. Epub 2011 Feb 25.
Helicobacter pylori cytotoxin-associated gene-pathogenicity island (cagPAI) is responsible for the secretion of the CagA effector through a type IV secretion system (T4SS) apparatus, as well as of peptidoglycan and possibly other not yet identified factors. Twenty-nine different polypeptide chains are encoded by this cluster of genes, although only some of them show a significant similarity with the constitutive elements of well characterized secretion systems from other bacteria. The other cagPAI components represent almost unique proteins in this scenario. The majority of the T4SS include approximately fifteen components, taking into account either the transmembrane complex subunits, ATPases or substrate factors. The composition of the cagPAI is very complex: it includes proteins most likely involved at different levels in the pilus assembly, stabilization and processing of secreted substrate, as well as regulatory particles possibly involved in the control of the entire apparatus. Despite recent findings with respect to components that play a role in the interaction with the host cell, the function of several cagPAI proteins remains unclear or unknown. This is particularly true for those that represent unique members with no clear similarity to those of other T4SS and no obvious evidence of involvement in the secretion of CagA or induction of pro-inflammatory responses. We summarize what is known about these accessory components, both from a molecular and structural point of view, as well as their putative physiological role.
幽门螺杆菌细胞毒素相关基因-致病性岛(cagPAI)通过 IV 型分泌系统(T4SS)装置负责 CagA 效应子的分泌,以及肽聚糖和可能其他尚未确定的因素。该基因簇编码了 29 种不同的多肽链,尽管其中只有一些与其他细菌中特征明确的分泌系统的组成元件具有显著的相似性。其他 cagPAI 成分在这种情况下代表几乎独一无二的蛋白质。大多数 T4SS 包括大约十五个组成部分,考虑到跨膜复合物亚基、ATP 酶或底物因子。cagPAI 的组成非常复杂:它包括可能在不同水平参与菌毛组装、分泌底物的稳定和加工,以及可能参与整个装置控制的调节颗粒的蛋白质。尽管最近发现了一些在与宿主细胞相互作用中起作用的成分,但几个 cagPAI 蛋白的功能仍然不清楚或未知。对于那些代表独特成员的蛋白质来说尤其如此,它们与其他 T4SS 没有明显的相似之处,也没有明显的证据表明它们参与 CagA 的分泌或诱导促炎反应。我们从分子和结构的角度总结了这些辅助成分的已知信息,以及它们可能的生理作用。