Guenthner T M
Biochem Pharmacol. 1986 Oct 1;35(19):3261-6. doi: 10.1016/0006-2952(86)90422-3.
A nuclear envelope-associated epoxide hydrolase in mouse liver that hydrates trans-stilbene oxide has been identified and characterized. This epoxide hydrolase is distinct from the enzyme in nuclear envelopes that hydrates benzo[a]pyrene 4,5-oxide and other arene oxides. This distinction was demonstrated by the criteria of pH optima, response to specific inhibitors in vitro, and precipitation by specific antibodies. The new epoxide hydrolase had a pH optimum of 6.8, was poorly inhibited by trichloropropene oxide, was potently inhibited by 4-phenylchalcone oxide, and did not bind to antiserum against benzo[a]pyrene 4,5-oxide hydrolase. This nuclear enzyme is similar in many of its properties to cytosolic and microsomal trans-stilbene oxide hydrolases and may be nuclear envelope-bound form of these other epoxide hydrolases. It differed from these other trans-stilbene oxide hydrolases in that its affinities for both trans-stilbene oxide (measured as apparent Km) and 4-phenylchalcone oxide (measured as I50) were 4- to 20-fold lower than those of either the cytosolic or microsomal forms.
已鉴定并表征了小鼠肝脏中一种与核膜相关的环氧化物水解酶,该酶可使反式氧化芪水合。这种环氧化物水解酶与核膜中使苯并[a]芘4,5-氧化物及其他芳烃氧化物水合的酶不同。通过最适pH值标准、体外对特定抑制剂的反应以及特定抗体沉淀等方法证明了这种差异。新的环氧化物水解酶最适pH值为6.8,对环氧三氯丙烷抑制作用较弱,对4-苯基查耳酮氧化物有强烈抑制作用,且不与抗苯并[a]芘4,5-氧化物水解酶的抗血清结合。这种核酶在许多特性上与胞质和微粒体反式氧化芪水解酶相似,可能是这些其他环氧化物水解酶的核膜结合形式。它与其他反式氧化芪水解酶的不同之处在于,它对反式氧化芪(以表观Km衡量)和4-苯基查耳酮氧化物(以I50衡量)的亲和力比胞质或微粒体形式的亲和力低4至20倍。