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液泡H⁺-ATP酶活性是拟南芥内吞和分泌运输所必需的。

Vacuolar H+-ATPase activity is required for endocytic and secretory trafficking in Arabidopsis.

作者信息

Dettmer Jan, Hong-Hermesdorf Anne, Stierhof York-Dieter, Schumacher Karin

机构信息

Center for Plant Molecular Biology-Plant Physiology, Universität Tübingen, 72076 Tübingen, Germany.

出版信息

Plant Cell. 2006 Mar;18(3):715-30. doi: 10.1105/tpc.105.037978. Epub 2006 Feb 3.

Abstract

In eukaryotic cells, compartments of the highly dynamic endomembrane system are acidified to varying degrees by the activity of vacuolar H(+)-ATPases (V-ATPases). In the Arabidopsis thaliana genome, most V-ATPase subunits are encoded by small gene families, thus offering potential for a multitude of enzyme complexes with different kinetic properties and localizations. We have determined the subcellular localization of the three Arabidopsis isoforms of the membrane-integral V-ATPase subunit VHA-a. Colocalization experiments as well as immunogold labeling showed that VHA-a1 is preferentially found in the trans-Golgi network (TGN), the main sorting compartment of the secretory pathway. Uptake experiments with the endocytic tracer FM4-64 revealed rapid colocalization with VHA-a1, indicating that the TGN may act as an early endosomal compartment. Concanamycin A, a specific V-ATPase inhibitor, blocks the endocytic transport of FM4-64 to the tonoplast, causes the accumulation of FM4-64 together with newly synthesized plasma membrane proteins, and interferes with the formation of brefeldin A compartments. Furthermore, nascent cell plates are rapidly stained by FM4-64, indicating that endocytosed material is redirected into the secretory flow after reaching the TGN. Together, our results suggest the convergence of the early endocytic and secretory trafficking pathways in the TGN.

摘要

在真核细胞中,高度动态的内膜系统的区室通过液泡H⁺-ATP酶(V-ATP酶)的活性被不同程度地酸化。在拟南芥基因组中,大多数V-ATP酶亚基由小基因家族编码,因此具有形成多种具有不同动力学特性和定位的酶复合物的潜力。我们已经确定了膜整合V-ATP酶亚基VHA-a的三种拟南芥同工型的亚细胞定位。共定位实验以及免疫金标记表明,VHA-a1优先存在于反式高尔基体网络(TGN)中,TGN是分泌途径的主要分选区室。用内吞示踪剂FM4-64进行的摄取实验表明它与VHA-a1迅速共定位,这表明TGN可能充当早期内体区室。V-ATP酶特异性抑制剂 concanamycin A可阻断FM4-64向内质体的内吞运输,导致FM4-64与新合成的质膜蛋白一起积累,并干扰布雷菲德菌素A区室的形成。此外,新生细胞板被FM4-64迅速染色,这表明内吞物质在到达TGN后会重新导向分泌流。总之,我们的结果表明早期内吞和分泌运输途径在TGN中汇聚。

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