首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Palmitoylation of Superoxide Dismutase 1 (SOD1) Is Increased for Familial Amyotrophic Lateral Sclerosis-linked SOD1 Mutants
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Palmitoylation of Superoxide Dismutase 1 (SOD1) Is Increased for Familial Amyotrophic Lateral Sclerosis-linked SOD1 Mutants

机译:家族性肌萎缩性侧索硬化症相关的SOD1突变体增加了超氧化物歧化酶1(SOD1)的棕榈酰化。

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摘要

Mutations in Cu,Zn-superoxide dismutase (mtSOD1) cause familial amyotrophic lateral sclerosis (FALS), a neurodegenerative disease resulting from motor neuron degeneration. Here, we demonstrate that wild type SOD1 (wtSOD1) undergoes palmitoylation, a reversible post-translational modification that can regulate protein structure, function, and localization. SOD1 palmitoylation was confirmed by multiple techniques, including acyl-biotin exchange, click chemistry, cysteine mutagenesis, and mass spectrometry. Mass spectrometry and cysteine mutagenesis demonstrated that cysteine residue 6 was the primary site of palmitoylation. The palmitoylation of FALS-linked mtSOD1s (A4V and G93A) was significantly increased relative to that of wtSOD1 expressed in HEK cells and a motor neuron cell line. The palmitoylation of FALS-linked mtSOD1s (G93A and G85R) was also increased relative to that of wtSOD1 when assayed from transgenic mouse spinal cords. We found that the level of SOD1 palmitoylation correlated with the level of membrane-associated SOD1, suggesting a role for palmitoylation in targeting SOD1 to membranes. We further observed that palmitoylation occurred predominantly on disulfide-reduced as opposed to disulfide-bonded SOD1, suggesting that immature SOD1 is the primarily palmitoylated species. Increases in SOD1 disulfide bonding and maturation with increased copper chaperone for SOD1 expression caused a decrease in wtSOD1 palmitoylation. Copper chaperone for SOD1 overexpression decreased A4V palmitoylation less than wtSOD1 and had little effect on G93A mtSOD1 palmitoylation. These findings suggest that SOD1 palmitoylation occurs prior to disulfide bonding during SOD1 maturation and that palmitoylation is increased when disulfide bonding is delayed or decreased as observed for several mtSOD1s.
机译:铜,锌超氧化物歧化酶(mtSOD1)中的突变会导致家族性肌萎缩性侧索硬化(FALS),这是一种由运动神经元变性导致的神经退行性疾病。在这里,我们证明野生型SOD1(wtSOD1)经历了棕榈酰化,这是一种可逆的翻译后修饰,可以调节蛋白质的结构,功能和定位。 SOD1棕榈酰化已通过多种技术得到证实,包括酰基生物素交换,点击化学,半胱氨酸诱变和质谱。质谱和半胱氨酸诱变表明半胱氨酸残基6是棕榈酰化的主要位点。与在HEK细胞和运动神经元细胞系中表达的wtSOD1相比,与FALS连接的mtSOD1(A4V和G93A)的棕榈酰化显着增加。当从转基因小鼠脊髓中检测时,相对于wtSOD1,与FALS连接的mtSOD1(G93A和G85R)的棕榈酰化也增加了。我们发现SOD1棕榈酰化的水平与膜相关的SOD1的水平相关,表明棕榈酰化在将SOD1靶向膜上的作用。我们进一步观察到棕榈酰化主要发生在二硫键还原的情况下,而不是与二硫键结合的SOD1,这表明未成熟的SOD1是主要的棕榈酰化物种。 SOD1二硫键的结合和成熟度的增加以及铜伴侣蛋白对SOD1表达的增加导致wtSOD1棕榈酰化的降低。铜伴侣蛋白对SOD1的过度表达降低了A4V棕榈酰化程度,少于wtSOD1,对G93A mtSOD1棕榈酰化作用很小。这些发现表明,SOD1棕榈酰化发生在SOD1成熟期间的二硫键结合之前,并且如对几个mtSOD1所观察到的,当二硫键的结合被延迟或减少时,棕榈酰化作用会增加。

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