Mashino T, Fridovich I
Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710.
Arch Biochem Biophys. 1987 Nov 1;258(2):356-60. doi: 10.1016/0003-9861(87)90355-9.
The interactions of urea, trimethylamine-N-oxide (TMAO), and related solutes on a number of enzymes were examined. Urea inhibited enzymatic activity and accelerated the thermal inactivation of catalase, whereas TMAO activated some enzymes but inhibited others. The effects of urea and of TMAO, whether parallel or in opposition, were exerted independently. Thus, in those cases where TMAO increases enzymatic activity, it did so to the same relative degree, whether or not urea was present. TMAO markedly decreased the rate of thermal inactivation of catalase, indicating that it does favor compact protein structures. The assumption that TMAO factors compaction of protein structure, whereas urea has the contrary effect, does not lead to the expectation that TMAO must always oppose the effect of urea on enzymatic activity, since the most compact form of an enzyme may not always be the most active form.
研究了尿素、氧化三甲胺(TMAO)及相关溶质对多种酶的相互作用。尿素抑制酶活性并加速过氧化氢酶的热失活,而TMAO激活一些酶但抑制另一些酶。尿素和TMAO的作用,无论是协同还是相反,都是独立发挥的。因此,在TMAO增加酶活性的那些情况下,无论是否存在尿素,其增加的相对程度是相同的。TMAO显著降低了过氧化氢酶的热失活速率,表明它确实有利于紧密的蛋白质结构。认为TMAO促使蛋白质结构致密化而尿素具有相反作用的假设,并不意味着TMAO一定会对抗尿素对酶活性的影响,因为酶的最紧密形式不一定总是最具活性的形式。