Kulich Ivan, Pečenková Tamara, Sekereš Juraj, Smetana Ondřej, Fendrych Matyáš, Foissner Ilse, Höftberger Margit, Zárský Viktor
Department of Experimental Plant Biology, Faculty of Sciences, Charles University, Prague, Czech Republic; Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Prague, Czech Republic.
Traffic. 2013 Nov;14(11):1155-65. doi: 10.1111/tra.12101. Epub 2013 Sep 17.
Autophagic transport to the vacuole represents an endomembrane trafficking route, which is widely used in plants, not only during stress situations, but also for vacuole biogenesis and during developmental processes. Here we report a role in autophagic membrane transport for EXO70B1--one of 23 paralogs of Arabidopsis EXO70 exocyst subunits. EXO70B1 positive compartments are internalized into the central vacuole and co-localize with autophagosomal marker ATG8f. This internalization is boosted by induction of autophagy. Loss of function (LOF) mutations in exo70B1 cause reduction of internalized autopagic bodies in the vacuole. Mutant plants also show ectopic hypersensitive response (HR) mediated by salicylic acid (SA) accumulation, increased nitrogen starvation susceptibility and anthocyanin accumulation defects. Anthocyanin accumulation defect persists in npr1x exo70B1 double mutants with SA signaling compromised, while ectopic HR is suppressed. EXO70B1 interacts with SEC5 and EXO84 and forms an exocyst subcomplex involved in autophagy-related, Golgi-independent membrane traffic to the vacuole. We show that EXO70B1 is functionally completely different from EXO70A1 exocyst subunit and adopted a specific role in autophagic transport.
自噬转运至液泡代表了一种内膜运输途径,该途径在植物中广泛存在,不仅在胁迫条件下发挥作用,在液泡生物发生过程以及发育进程中也同样如此。在此,我们报道了拟南芥EXO70外泌体亚基23个旁系同源物之一的EXO70B1在自噬膜运输中的作用。EXO70B1阳性区室被内化到中央液泡中,并与自噬体标记物ATG8f共定位。这种内化作用通过自噬的诱导而增强。exo70B1功能丧失(LOF)突变导致液泡中内化自噬体数量减少。突变体植株还表现出由水杨酸(SA)积累介导的异位超敏反应(HR)、对氮饥饿敏感性增加以及花青素积累缺陷。在SA信号传导受损的npr1x exo70B1双突变体中,花青素积累缺陷仍然存在,而异位HR受到抑制。EXO70B1与SEC5和EXO84相互作用,并形成一个外泌体亚复合物,参与与自噬相关的、不依赖高尔基体的向液泡的膜运输。我们表明,EXO70B1在功能上与EXO70A1外泌体亚基完全不同,并在自噬运输中发挥特定作用。