Lash L H, Elfarra A A, Anders M W
J Biol Chem. 1986 May 5;261(13):5930-5.
Cysteine conjugate beta-lyase activity from rat kidney cortex was found in the cystosolic and mitochondrial fractions. With 2 mM S-(2-benzothiazolyl)-L-cysteine as the substrate, approximately two-thirds of the total beta-lyase activity was present in the cytosolic fraction. The kinetics of beta-lyase activity with three cysteine S-conjugates were different in the cytosolic and mitochondrial fractions, and the mitochondrial beta-lyase was much more sensitive to inhibition by aminooxyacetic acid than was the cytosolic activity. These results indicate that the beta-lyase activities in the two subcellular fractions are catalyzed by distinct enzymes. Nephrotoxic cysteine S-conjugates of halogenated hydrocarbons that require bioactivation by cysteine conjugate beta-lyase (S-(1,2-dichlorovinyl)-L-cysteine (DCVC), S-(2-chloro-1,1,2-trifluoroethyl)-L-cysteine, CTFC) were potent inhibitors of state 3 respiration in rat kidney mitochondria. Fractionation of mitochondria by digitonin treatment and comparison with marker enzyme distributions showed that the mitochondrial beta-lyase activity is localized in the outer mitochondrial membrane. Inhibition of the beta-lyase prevented the mitochondrial toxicity of DCVC and CTFC, and nonmetabolizable, alpha-methyl analogues of DCVC and CTFC were not toxic. Neither DCVC nor CTFC was toxic to mitoplasts, indicating that activation by the beta-lyase occurs on the outer membrane and may be essential for the expression of toxicity; in contrast, the direct acting nephrotoxin S-(2-chloroethyl)-DL-cysteine was toxic to both mitochondria and mitoplasts. Thus, the suborganelle localization of DCVC and CTFC bioactivation correlates with the observed pattern of toxicity.
在大鼠肾皮质的胞质溶胶和线粒体组分中发现了半胱氨酸共轭β-裂合酶活性。以2 mM S-(2-苯并噻唑基)-L-半胱氨酸为底物时,约三分之二的总β-裂合酶活性存在于胞质溶胶组分中。胞质溶胶和线粒体组分中,三种半胱氨酸S-共轭物的β-裂合酶活性动力学不同,线粒体β-裂合酶比胞质溶胶活性对氨氧基乙酸抑制更敏感。这些结果表明,两个亚细胞组分中的β-裂合酶活性由不同的酶催化。需要半胱氨酸共轭β-裂合酶进行生物活化的卤代烃肾毒性半胱氨酸S-共轭物(S-(1,2-二氯乙烯基)-L-半胱氨酸(DCVC)、S-(2-氯-1,1,2-三氟乙基)-L-半胱氨酸,CTFC)是大鼠肾线粒体状态3呼吸的有效抑制剂。用洋地黄皂苷处理对线粒体进行分级分离,并与标记酶分布进行比较,结果表明线粒体β-裂合酶活性定位于线粒体外膜。β-裂合酶的抑制可防止DCVC和CTFC的线粒体毒性,DCVC和CTFC的不可代谢α-甲基类似物无毒。DCVC和CTFC对线粒体嵴均无毒性,表明β-裂合酶的活化发生在外膜上,可能是毒性表达所必需的;相比之下,直接作用性肾毒素S-(2-氯乙基)-DL-半胱氨酸对线粒体和线粒体嵴均有毒性。因此,DCVC和CTFC生物活化的亚细胞器定位与观察到的毒性模式相关。