Institute of Molecular Medicine, College of Medicine, National Taiwan University, Taipei, Taiwan.
PLoS One. 2012;7(8):e43552. doi: 10.1371/journal.pone.0043552. Epub 2012 Aug 21.
ARL4D, ARL4A, and ARL4C are closely related members of the ADP-ribosylation factor/ARF-like protein (ARF/ARL) family of GTPases. All three ARL4 proteins contain nuclear localization signals (NLSs) at their C-termini and are primarily found at the plasma membrane, but they are also present in the nucleus and cytoplasm. ARF function and localization depends on their controlled binding and hydrolysis of GTP. Here we show that GTP-binding-defective ARL4D is targeted to the mitochondria, where it affects mitochondrial morphology and function. We found that a portion of endogenous ARL4D and the GTP-binding-defective ARL4D mutant ARL4D(T35N) reside in the mitochondria. The N-terminal myristoylation of ARL4D(T35N) was required for its localization to mitochondria. The localization of ARL4D(T35N) to the mitochondria reduced the mitochondrial membrane potential (ΔΨm) and caused mitochondrial fragmentation. Furthermore, the C-terminal NLS region of ARL4D(T35N) was required for its effect on the mitochondria. This study is the first to demonstrate that the dysfunctional GTP-binding-defective ARL4D is targeted to mitochondria, where it subsequently alters mitochondrial morphology and membrane potential.
ARL4D、ARL4A 和 ARL4C 是紧密相关的 ADP-ribosylation 因子/ARF 样蛋白 (ARF/ARL) 家族的 GTP 酶成员。这三种 ARL4 蛋白的 C 末端都含有核定位信号 (NLS),主要位于质膜,但也存在于核和细胞质中。ARF 的功能和定位取决于其对 GTP 的控制结合和水解。在这里,我们表明,GTP 结合缺陷的 ARL4D 被靶向到线粒体,在那里它影响线粒体的形态和功能。我们发现一部分内源性 ARL4D 和 GTP 结合缺陷的 ARL4D 突变体 ARL4D(T35N)位于线粒体中。ARL4D(T35N)的 N 端豆蔻酰化对于其在线粒体中的定位是必需的。ARL4D(T35N)在定位到线粒体时会降低线粒体膜电位 (ΔΨm) 并导致线粒体碎片化。此外,ARL4D(T35N)的 C 末端 NLS 区域是其对线粒体产生影响所必需的。本研究首次证明,功能失调的 GTP 结合缺陷的 ARL4D 被靶向到线粒体,随后改变线粒体的形态和膜电位。