Jia Haiqun, Yan Tingting, Feng Yan, Zeng Chengming, Shi Xianglin, Zhai Qiwei
Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, PR China.
Neurosci Lett. 2007 Feb 8;413(1):46-51. doi: 10.1016/j.neulet.2006.11.067. Epub 2006 Dec 15.
The chimeric Wld(s) protein consisting of the N-terminal 70 amino acids of Ufd2 and the complete sequence of nicotinamide mononucleotide adenylyltransferase1 (Nmnat1), delays Wallerian degeneration in Wld(s) mice. Although Nmnat1 enzyme activity was showed to be critical for the function of Wld(s) protein, the expected phenotype was not observed in Nmnat1 transgenic mice. To further check whether Nmnat1 enzyme activity is involved, we aligned sequences of eukaryotic Nmnats, and found that Phe in helix A is highly conserved not only in various species, but also in different homologues. The Phe is a residue located near to the highly conserved GXFXPX(T/H)XXH motif and resides in the same helix as the last His of this conserved motif. To investigate the role of the conserved Phe in Nmnat activity, we made the point mutation of Phe. The Phe28 mutation of mouse Nmnat1 in Wld(s) completely abolished its Nmnat enzyme activity. To study the role of mutant Wld(s) in axon degeneration, herpes viruses were packaged to infect cultured SCGs. We found that the mutant Wld(s) failed to protect axon degeneration from morphological changes, microtubule integration and neurofilament degradation. Therefore, we have identified a Phe residue that critical for both enzyme activity of Nmnat and the axon-protective function of Wld(s), and further confirmed that Nmnat1 enzyme activity is required in Wld(s) function.
由泛素融合降解蛋白2(Ufd2)的N端70个氨基酸和烟酰胺单核苷酸腺苷酰转移酶1(Nmnat1)的完整序列组成的嵌合Wld(s)蛋白,可延缓Wld(s)小鼠的沃勒氏变性。尽管已证明Nmnat1酶活性对Wld(s)蛋白的功能至关重要,但在Nmnat1转基因小鼠中未观察到预期的表型。为了进一步检查Nmnat1酶活性是否参与其中,我们比对了真核生物Nmnat的序列,发现A螺旋中的苯丙氨酸不仅在不同物种中高度保守,在不同同源物中也是如此。该苯丙氨酸是位于高度保守的GXFXPX(T/H)XXH基序附近的一个残基,与该保守基序的最后一个组氨酸位于同一螺旋中。为了研究保守苯丙氨酸在Nmnat活性中的作用,我们对苯丙氨酸进行了点突变。Wld(s)小鼠中Nmnat1的苯丙氨酸28突变完全消除了其Nmnat酶活性。为了研究突变型Wld(s)在轴突退化中的作用,我们包装疱疹病毒来感染培养的交感神经节。我们发现突变型Wld(s)无法保护轴突免于形态变化、微管整合和神经丝降解。因此,我们确定了一个对Nmnat酶活性和Wld(s)的轴突保护功能都至关重要的苯丙氨酸残基,并进一步证实Wld(s)功能需要Nmnat1酶活性。