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醛缩酶直接与 ARNO 相互作用,并调节细胞形态和酸性囊泡的分布。

Aldolase directly interacts with ARNO and modulates cell morphology and acidic vesicle distribution.

机构信息

Program in Membrane Biology and Nephrology Division, Center for Systems Biology, Simches Research Center, Massachusetts General Hospital, 185 Cambridge Street, Boston, MA 02114, USA.

出版信息

Am J Physiol Cell Physiol. 2011 Jun;300(6):C1442-55. doi: 10.1152/ajpcell.00076.2010. Epub 2011 Feb 9.

Abstract

Previously, we demonstrated that the vacuolar-type H(+)-ATPase (V-ATPase) a2-subunit functions as an endosomal pH sensor that interacts with the ADP-ribosylation factor (Arf) guanine nucleotide exchange factor, ARNO. In the present study, we showed that ARNO directly interacts not only with the a2-subunit but with all a-isoforms (a1-a4) of the V-ATPase, indicating a widespread regulatory interaction between V-ATPase and Arf GTPases. We then extended our search for other ARNO effectors that may modulate V-ATPase-dependent vesicular trafficking events and actin cytoskeleton remodeling. Pull-down experiments using cytosol of mouse proximal tubule cells (MTCs) showed that ARNO interacts with aldolase, but not with other enzymes of the glycolytic pathway. Direct interaction of aldolase with the pleckstrin homology domain of ARNO was revealed by pull-down assays using recombinant proteins, and surface plasmon resonance revealed their high avidity interaction with a dissociation constant: K(D) = 2.84 × 10(-10) M. MTC cell fractionation revealed that aldolase is also associated with membranes of early endosomes. Functionally, aldolase knockdown in HeLa cells produced striking morphological changes accompanied by long filamentous cell protrusions and acidic vesicle redistribution. However, the 50% knockdown we achieved did not modulate the acidification capacity of endosomal/lysosomal compartments. Finally, a combination of small interfering RNA knockdown and overexpression revealed that the expression of aldolase is inversely correlated with gelsolin levels in HeLa cells. In summary, we have shown that aldolase forms a complex with ARNO/Arf6 and the V-ATPase and that it may contribute to remodeling of the actin cytoskeleton and/or the trafficking and redistribution of V-ATPase-dependent acidic compartments via a combination of protein-protein interaction and gene expression mechanisms.

摘要

先前,我们证明了液泡型 H(+)-ATP 酶 (V-ATPase) 的 a2 亚基作为一种内体 pH 感受器发挥作用,与 ADP-核糖基化因子 (Arf) 的鸟嘌呤核苷酸交换因子 ARNO 相互作用。在本研究中,我们表明 ARNO 不仅直接与 a2 亚基相互作用,而且与 V-ATPase 的所有 a-同工型 (a1-a4) 相互作用,表明 V-ATPase 和 Arf GTPases 之间存在广泛的调节相互作用。然后,我们扩展了对其他 ARNO 效应物的搜索,这些效应物可能调节 V-ATPase 依赖性囊泡运输事件和肌动蛋白细胞骨架重塑。使用鼠近端肾小管细胞 (MTC) 的细胞质进行的下拉实验表明,ARNO 与醛缩酶相互作用,但与糖酵解途径的其他酶不相互作用。使用重组蛋白进行的下拉实验揭示了醛缩酶与 ARNO 的pleckstrin 同源结构域的直接相互作用,表面等离子体共振显示它们具有高亲和力相互作用,解离常数:K(D) = 2.84 × 10(-10) M。MTC 细胞分级分离表明醛缩酶也与早期内体的膜相关。功能上,HeLa 细胞中的醛缩酶敲低会产生明显的形态变化,伴有长丝状细胞突起和酸性囊泡再分布。然而,我们实现的 50%敲低并没有调节内体/溶酶体区室的酸化能力。最后,小干扰 RNA 敲低和过表达的组合表明,醛缩酶的表达与 HeLa 细胞中的凝胶蛋白水平呈负相关。总之,我们已经表明,醛缩酶与 ARNO/Arf6 和 V-ATPase 形成复合物,并且它可能通过蛋白质-蛋白质相互作用和基因表达机制有助于肌动蛋白细胞骨架的重塑和/或 V-ATPase 依赖性酸性区室的运输和再分布。

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