Krasna A I
J Gen Microbiol. 1984 Apr;130(4):779-87. doi: 10.1099/00221287-130-4-779.
Mutant strains of Escherichia coli which expressed different levels of hydrogenase activity when grown anaerobically under a variety of conditions were obtained by mutagenesis and selective growth and screening procedures. Four classes of mutants were isolated, ranging from those devoid of enzyme activity to those expressing maximal activity under all growth conditions. One class of mutants (A) could not grow on fumarate plus H2 in the presence of active fumarate reductase. Since hydrogenase is essential for growth under these conditions some of these strains may be hydrogenase-negative. Three other classes of mutants were isolated which were all hydrogenase-positive and fully expressed this activity when grown on fumarate plus H2. They differed in the level of expression of hydrogenase activity when grown anaerobically on glucose, conditions which do not require hydrogenase for growth. Class B mutants expressed less activity, while class C mutants expressed more activity than the parental strain. Class D mutants fully expressed hydrogenase activity and were dependent on the enzyme for growth. The different strains were also assayed for reduction of dyes by hydrogen and for evolution of hydrogen from reduced methyl viologen. Some of the hydrogenase-positive strains showed altered activities in these assays suggesting that mutations may have occurred either in enzymes or proteins required for reaction with dyes or in the hydrogenase enzyme itself.
通过诱变以及选择性生长和筛选程序,获得了在多种条件下厌氧生长时表达不同水平氢化酶活性的大肠杆菌突变菌株。分离出了四类突变体,从那些没有酶活性的到在所有生长条件下都表达最大活性的。一类突变体(A)在有活性的延胡索酸还原酶存在的情况下,不能在延胡索酸加氢气的培养基上生长。由于氢化酶在这些条件下对生长至关重要,所以这些菌株中的一些可能是氢化酶阴性的。另外分离出了三类突变体,它们都是氢化酶阳性的,并且在延胡索酸加氢气的培养基上生长时能充分表达这种活性。当在葡萄糖上厌氧生长时(在这种条件下生长不需要氢化酶),它们在氢化酶活性的表达水平上存在差异。B类突变体表达的活性较低,而C类突变体表达的活性比亲本菌株更高。D类突变体充分表达氢化酶活性,并且生长依赖于该酶。还对不同菌株进行了氢气还原染料以及从还原型甲基紫精产生氢气的检测。一些氢化酶阳性菌株在这些检测中表现出活性改变,这表明突变可能发生在与染料反应所需的酶或蛋白质中,或者发生在氢化酶本身中。