Hille Russ
Department of Molecular and Cellular Biochemistry, The Ohio State University, 333 Hamilton Hall, 1645 Neil Avenue, Columbus, OH 43210, USA.
Arch Biochem Biophys. 2005 Jan 1;433(1):107-16. doi: 10.1016/j.abb.2004.08.012.
Unlike monooxygenases, molybdenum-containing hydroxylases catalyze the hydroxylation of carbon centers using oxygen derived ultimately from water, rather than O(2), as the source of the oxygen atom incorporated into the product, and do not require an external source of reducing equivalents. The mechanism by which this interesting chemistry takes place has been the subject of investigation for some time, and in the last several years the chemical course of the reaction has become increasingly well understood. The present minireview summarizes recent mechanistic and structure/function studies of members of this large and growing family of enzymes.
与单加氧酶不同,含钼羟化酶利用最终来源于水而非O₂的氧作为掺入产物中的氧原子来源,催化碳中心的羟化反应,并且不需要外部的还原当量来源。这种有趣的化学反应发生的机制已经研究了一段时间,在过去几年中,该反应的化学过程越来越为人所理解。本微型综述总结了这个庞大且不断发展的酶家族成员的近期机制以及结构/功能研究。