Department of Applied Genetics and Cell Biology, Division of Molecular Cell Biology and Glycobiotechnology, University of Natural Resources and Life Sciences, Muthgasse 18, 1190, Vienna, Austria.
Protoplasma. 2016 Jan;253(1):137-53. doi: 10.1007/s00709-015-0798-1. Epub 2015 Mar 22.
The significance of the endosomal sorting complexes required for transport (ESCRT)-III in cereal endosperm has been shown by the identification of the recessive mutant supernumerary aleurone layer1 (SAL1) in maize. ESCRT-III is indispensable in the final membrane fission step during biogenesis of multivesicular bodies (MVBs), responsible for protein sorting to vacuoles and to the cell surface. Here, we annotated barley ESCRT-III members in the (model) crop Hordeum vulgare and show that all identified members are expressed in developing barley endosperm. We used fluorescently tagged core ESCRT-III members HvSNF7a/CHMP4 and HvVPS24/CHMP3 and the associated ESCRT-III component HvVPS60a/CHMP5 for transient localization studies in barley endosperm. In vivo confocal microscopic analyses show that the localization of recombinantly expressed HvSNF7a, HvVPS24 and HvVPS60a differs within barley endosperm. Whereas HvSNF7a induces large agglomerations, HvVPS24 shows mainly cytosolic localization in aleurone and subaleurone. In contrast, HvVPS60a localizes strongly at the plasma membrane in aleurone. In subaleurone, HvVPS60a was found to a lesser extent at the plasma membrane and at vacuolar membranes. These results indicate that the steady-state association of ESCRT-III may be influenced by cell layer-specific protein deposition or trafficking and remodelling of the endomembrane system in endosperm. We show that sorting of an artificially mono-ubiquitinated Arabidopsis plasma membrane protein is inhibited by HvVPS60a in aleurone. The involvement of HvVPS60a in different cell layer-specific trafficking pathways, reflected by localization of HvVPS60a at the plasma membrane in aleurone and at the PSV membrane in subaleurone, is discussed.
内体分选复合物必需蛋白(ESCRT-III)在谷物胚乳中的重要性已通过鉴定玉米隐性突变体多余糊粉层 1(SAL1)得到证实。ESCRT-III 在多泡体(MVB)生物发生的最后一步膜分裂中是不可或缺的,负责蛋白质分拣到液泡和细胞表面。在这里,我们注释了大麦(模式作物)中的 ESCRT-III 成员,并表明所有鉴定出的成员都在发育中的大麦胚乳中表达。我们使用荧光标记的核心 ESCRT-III 成员 HvSNF7a/CHMP4 和 HvVPS24/CHMP3 以及相关的 ESCRT-III 成分 HvVPS60a/CHMP5 进行了大麦胚乳的瞬时定位研究。体内共聚焦显微镜分析表明,重组表达的 HvSNF7a、HvVPS24 和 HvVPS60a 在大麦胚乳中的定位不同。尽管 HvSNF7a 诱导大聚集体,但 HvVPS24 在糊粉层和亚糊粉层中主要表现为细胞质定位。相比之下,HvVPS60a 在糊粉层中强烈定位于质膜。在亚糊粉层中,HvVPS60a 较少定位于质膜和液泡膜上。这些结果表明,ESCRT-III 的稳态结合可能受到细胞层特异性蛋白沉积或质膜运输的影响,以及胚乳内膜系统的重塑。我们表明,拟南芥质膜蛋白的人工单泛素化的分拣被 HvVPS60a 在糊粉层中抑制。HvVPS60a 参与不同的细胞层特异性运输途径,这反映在 HvVPS60a 在糊粉层中的质膜定位和在亚糊粉层中的 PSV 膜定位上,这一点正在讨论中。