Wallerian axonal degeneration (WD) does not occur in the nematode C. elegans, in contrast to other model animals. However, WD depends on the NADase activity of SARM1, a protein that is also expressed in C. elegans (ceSARM/ceTIR-1). We hypothesized that differences in SARM between species might exist and account for the divergence in WD. We first show that expression of the human (h)SARM1, but not ceTIR-1, in C. elegans neurons is sufficient to confer axon degeneration after nerve injury. Next, we determined the cryoelectron microscopy structure of ceTIR-1 and found that, unlike hSARM1, which exists as an auto-inhibited ring octamer, ceTIR-1 forms a readily active 9-mer. Enzymatically, the NADase activity of ceTIR-1 is substantially weaker (10-fold higher Km) than that of hSARM1, and even when fully active, it falls short of consuming all cellular NAD(+). Our experiments provide insight into the molecular mechanisms and evolution of SARM orthologs and WD across species.
Structure-function analysis of ceTIR-1/hSARM1 explains the lack of Wallerian axonal degeneration in C. elegans.
ceTIR-1/hSARM1 的结构功能分析解释了秀丽隐杆线虫中缺乏瓦勒氏轴突退化
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作者:Khazma Tami, Grossman Atira, Guez-Haddad Julia, Feng Chengye, Dabas Hadas, Sain Radhika, Weitman Michal, Zalk Ran, Isupov Michail N, Hammarlund Marc, Hons Michael, Opatowsky Yarden
| 期刊: | Cell Reports | 影响因子: | 6.900 |
| 时间: | 2023 | 起止号: | 2023 Sep 26; 42(9):113026 |
| doi: | 10.1016/j.celrep.2023.113026 | ||
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