Nicolaisen Kerstin, Hahn Alexander, Schleiff Enrico
Johann Wolfgang Goethe University Frankfurt am Main, Cluster of Excellence Macromolecular Complexes, Center of Membrane Proteomics, Department of Biosciences, Molecular Cell Biology, Frankfurt, Germany.
J Basic Microbiol. 2009 Feb;49(1):5-24. doi: 10.1002/jobm.200800300.
Filamentous cyanobacteria like Anabaena sp. PCC 7120 are able to develop a specialized cell type named heterocyst from vegetative cells in times of nitrogen starvation. Heterocyst development is controlled by the function of two master-regulators, NtcA and HetR. This review focuses on the remodeling of the cell wall during transition from the vegetative cell to a heterocyst, including the formation of the heterocyst-specific glycolipid layer and the heterocyst envelope polysaccharide layer. The functional assignment of genes involved therein, their genomic organization and their regulation are highlighted. Communication pathways and exchange routes for metabolites between heterocysts and vegetative cells are discussed. Further on, an overview of the heterocyst outer membrane proteome is given, together with possible functions of the identified proteins in the metabolism of heterocysts.
丝状蓝细菌,如鱼腥藻PCC 7120,在氮饥饿时能够从营养细胞发育出一种名为异形胞的特殊细胞类型。异形胞的发育由两个主调控因子NtcA和HetR的功能控制。本综述重点关注从营养细胞向异形胞转变过程中细胞壁的重塑,包括异形胞特异性糖脂层和异形胞包膜多糖层的形成。文中突出了其中涉及基因的功能分配、它们的基因组组织及其调控。讨论了异形胞与营养细胞之间代谢物的通讯途径和交换路线。此外,还给出了异形胞外膜蛋白质组的概述,以及所鉴定蛋白质在异形胞代谢中的可能功能。