Mishler-Elmore John W, Zhou Yadi, Sukul Abhijit, Oblak Mercedes, Tan Li, Faik Ahmed, Held Michael A
Department of Chemistry and Biochemistry, Ohio University, Athens, OH, United States.
Complex Carbohydrate Research Center, University of Georgia, Athens, GA, United States.
Front Plant Sci. 2021 May 14;12:664738. doi: 10.3389/fpls.2021.664738. eCollection 2021.
The extensin (EXT) network is elaborated by the covalent intermolecular crosslinking of EXT glycoprotein monomers, and its proper assembly is important for numerous aspects of basic wall architecture and cellular defense. In this review, we discuss new advances in the secretion of EXT monomers and the molecular drivers of EXT network self-assembly. Many of the functions of EXTs are conferred through covalent crosslinking into the wall, so we also discuss the different types of known intermolecular crosslinks, the enzymes that are involved, as well as the potential for additional crosslinks that are yet to be identified. EXTs also function in wall architecture independent of crosslinking status, and therefore, we explore the role of non-crosslinking EXTs. As EXT crosslinking is upregulated in response to wounding and pathogen infection, we discuss a potential regulatory mechanism to control covalent crosslinking and its relationship to the subcellular localization of the crosslinking enzymes.
伸展蛋白(EXT)网络是由EXT糖蛋白单体的共价分子间交联形成的,其正确组装对于基本细胞壁结构和细胞防御的诸多方面都很重要。在本综述中,我们讨论了EXT单体分泌和EXT网络自组装的分子驱动因素方面的新进展。EXT的许多功能是通过共价交联进入细胞壁来实现的,因此我们还讨论了已知的不同类型分子间交联、参与其中的酶以及尚未确定的其他交联的可能性。EXT在不依赖交联状态的细胞壁结构中也发挥作用,因此,我们探讨了非交联EXT的作用。由于EXT交联在伤口和病原体感染时会上调,我们讨论了一种控制共价交联的潜在调节机制及其与交联酶亚细胞定位的关系。