Selenoprotein TRXR-1 and GSR-1 are essential for removal of old cuticle during molting in Caenorhabditis elegans

被引:58
作者
Stenvall, Jorgen [1 ,2 ]
Fierro-Gonzalez, Juan Carlos [3 ]
Swoboda, Peter [3 ]
Saamarthy, Karunakar [1 ]
Cheng, Qing [4 ]
Cacho-Valadez, Briseida [5 ]
Arner, Elias S. J. [4 ]
Persson, Olof P. [2 ]
Miranda-Vizuete, Antonio [5 ,6 ]
Tuck, Simon [1 ]
机构
[1] Umea Univ, Umea Ctr Mol Med, SE-90187 Umea, Sweden
[2] Umea Univ, Dept Mol Biol, SE-90187 Umea, Sweden
[3] Sodertorn Univ Coll, Sch Life Sci, Dept Biosci & Nutr, Karolinska Inst, SE-14157 Huddinge, Sweden
[4] Karolinska Inst, Dept Med Biochem & Biophys, Div Biochem, SE-17177 Stockholm, Sweden
[5] Univ Pablo de Olavide, Dept Fisol Anat & Biol Celular, Ctr Andaluz Biol Desarrollo CABD CSIC, E-41013 Seville, Spain
[6] Univ Seville, CSIC, Hosp Univ Virgen Rocio, Inst Biomed Sevilla, E-41013 Seville, Spain
关键词
MAMMALIAN THIOREDOXIN REDUCTASE; GLUTATHIONE-REDUCTASE; ACTIVE-SITE; SELENOCYSTEINE; SELENIUM; PROTEIN; SYSTEM; VIABILITY; CYSTEINE; RESIDUE;
D O I
10.1073/pnas.1006328108
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Selenoproteins, in particular thioredoxin reductase, have been implicated in countering oxidative damage occurring during aging but the molecular functions of these proteins have not been extensively investigated in different animal models. Here we demonstrate that TRXR-1 thioredoxin reductase, the sole selenoprotein in Caenorhabditis elegans, does not protect against acute oxidative stress but functions instead together with GSR-1 glutathione reductase to promote the removal of old cuticle during molting. We show that the oxidation state of disulfide groups in the cuticle is tightly regulated during the molting cycle, and that when trxr-1 and gsr-1 function is reduced, disulfide groups in the cuticle remain oxidized. A selenocysteine-to-cysteine TRXR-1 mutant fails to rescue molting defects. Furthermore, worms lacking SELB-1, the C. elegans homolog of Escherichia coli SelB or mammalian EFsec, a translation elongation factor known to be specific for selenocysteine in E. coli, fail to incorporate selenocysteine, and display the same phenotype as those lacking trxr-1. Thus, TRXR-1 function in the reduction of old cuticle is strictly selenocysteine dependent in the nematode. Exogenously supplied reduced glutathione reduces disulfide groups in the cuticle and induces apolysis, the separation of old and new cuticle, strongly suggesting that molting involves the regulated reduction of cuticle components driven by TRXR-1 and GSR-1. Using dauer larvae, we demonstrate that aged worms have a decreased capacity to molt, and decreased expression of GSR-1. Together, our results establish a function for the selenoprotein TRXR-1 and GSR-1 in the removal of old cuticle from the surface of epidermal cells.
引用
收藏
页码:1064 / 1069
页数:6
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