Verma Amit K, Tamadaddi Chetana, Tak Yogesh, Lal Silviya S, Cole Sierra J, Hines Justin K, Sahi Chandan
Department of Biological Sciences, Indian Institute of Science Education and Research Bhopal, Bhopal, India.
Department of Chemistry, Lafayette College, Easton, PA, USA.
CRC Crit Rev Plant Sci. 2019;38(5-6):382-400. doi: 10.1080/07352689.2019.1693716. Epub 2019 Dec 10.
Plants maintain cellular proteostasis during different phases of growth and development despite a barrage of biotic and abiotic stressors in an ever-changing environment. This requires a collaborative effort of a cadre of molecular chaperones. Hsp70s and their obligate co-chaperones, J-domain proteins (JDPs), are arguably the most ubiquitous and formidable components of the cellular chaperone network, facilitating numerous and diverse cellular processes and allowing survival under a plethora of stressful conditions. JDPs are also among the most versatile chaperones. Compared to Hsp70s, the number of JDP-encoding genes has proliferated, suggesting the emergence of highly complex Hsp70-JDP networks, particularly in plants. Recent studies indicate that besides the increase in the number of JDP encoding genes; regulatory differences, neo- and sub-functionalization, and inter- and intra-class combinatorial interactions, is rapidly expanding the repertoire of Hsp70-JDP systems. This results in highly robust and functionally diverse chaperone networks in plants. Here, we review the current status of plant JDP research and discuss how the paradigm shift in the field can be exploited toward a better understanding of JDP function and evolution.
尽管在不断变化的环境中存在大量生物和非生物应激源,但植物在生长和发育的不同阶段仍能维持细胞蛋白质稳态。这需要一群分子伴侣的协同努力。热休克蛋白70(Hsp70)及其专一性共伴侣J结构域蛋白(JDP)可以说是细胞伴侣网络中最普遍、最强大的组成部分,它们促进了众多不同的细胞过程,并使植物能够在大量应激条件下存活。JDP也是最具多功能性的伴侣蛋白之一。与Hsp70相比,编码JDP的基因数量激增,这表明出现了高度复杂的Hsp70-JDP网络,尤其是在植物中。最近的研究表明,除了编码JDP的基因数量增加外,调控差异、新功能化和亚功能化,以及类间和类内组合相互作用,正在迅速扩大Hsp70-JDP系统的功能范围。这导致了植物中高度稳健且功能多样的伴侣网络。在这里,我们综述了植物JDP研究的现状,并讨论了如何利用该领域的范式转变来更好地理解JDP的功能和进化。