首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Vacuolar Na~+/H~+ antiporter cation selectivity is regulated by calmodulin from within the vacuole in a Ca~(2+)- and pH-dependent manner
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Vacuolar Na~+/H~+ antiporter cation selectivity is regulated by calmodulin from within the vacuole in a Ca~(2+)- and pH-dependent manner

机译:钙调蛋白从液泡内部以Ca〜(2+)和pH依赖的方式调节液泡中Na〜+ / H〜+反转运蛋白阳离子的选择性。

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摘要

The selective movement of ions between intracellular compartments is fundamental for eukaryotes. Arabidopsis thaliana Na~+/ H~+ exchanger 1 (AtNHX1), the most abundant vacuolar Na~+/H~+ antiporter in A. thaliana, has important roles affecting the maintenance of cellular pH, ion homeostasis, and the regulation of protein trafficking. Previously, we have shown that the AtNHX1 C-terminal hydrophilic region localized in the vacuolar lumen plays an important role in regulating the antiporter's activity. Here, we have identified A. thaliana calmodulin-like protein 15 (AtCaM15), which interacts with the AtNHX1 C terminus. When expressed in yeast, AtCaM15 is localized in the vacuolar lumen. The transient expression of AtCaM15 in Arabidopsis leaf protoplasts showed that AtCaM15 is present in the central vacuole. The binding of AtCaM15 to AtNHX1 was Ca~(2+)- and pH-dependent and decreased with increasing pH values. Our results also show that the binding of AtCaM15 to AtNHX1 modified the Na~+/K~+ selectivity of the antiporter, decreasing its Na~+/H~+ exchange activity. Taken together, the presence of a vacuolar calmodulin-like protein acting on the vacuolar-localized AtNHX1 C terminus in a Ca~(2+)- pH-dependent manner suggests the presence of signaling entities acting within the vacuole.
机译:离子在细胞内区室之间的选择性运动是真核生物的基础。拟南芥Na〜+ / H〜+交换子1(AtNHX1),是拟南芥中最丰富的液泡Na〜+ / H〜+反向转运蛋白,对维持细胞pH,离子稳态和蛋白质调节具有重要作用。贩运以前,我们已经表明,位于液泡腔中的AtNHX1 C端亲水区在调节反向转运蛋白的活性中起重要作用。在这里,我们确定了拟南芥钙调蛋白样蛋白15(AtCaM15),它与AtNHX1 C末端相互作用。当在酵母中表达时,AtCaM15位于液泡腔中。 AtCaM15在拟南芥叶片原生质体中的瞬时表达表明,AtCaM15存在于中央液泡中。 AtCaM15与AtNHX1的结合是Ca〜(2 +)-和pH依赖性的,并且随着pH值的增加而降低。我们的结果还表明,AtCaM15与AtNHX1的结合修饰了反向转运蛋白的Na〜+ / K〜+选择性,从而降低了其Na〜+ / H〜+交换活性。两者合计,以Ca〜(2 +)-pH依赖性方式作用于液泡定位的AtNHX1 C末端的液泡钙调蛋白样蛋白的存在表明存在在液泡中起作用的信号实体。

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