Laboratories of Biochemistry, Department of Biology and Biotechnology, University of Pavia, Pavia, Italy.
Biofactors. 2015 May 6;41(3):135-52. doi: 10.1002/biof.1214. Epub 2015 May 12.
L-Methionine (L-Met) is the only sulphur-containing proteinogenic amino acid together with cysteine. Its importance is highlighted by it being the initiator amino acid for protein synthesis in all known living organisms. L-Met, free or inserted into proteins, is sensitive to oxidation of its sulfide moiety, with formation of L-Met sulfoxide. The sulfoxide could not be inserted into proteins, and the oxidation of L-Met in proteins often leads to the loss of biological activity of the affected molecule. Key discoveries revealed the existence, in rats, of a metabolic pathway for the reduction of free L-Met sulfoxide and, later, in Escherichia coli, of the enzymatic reduction of L-Met sulfoxide inserted in proteins. Upon oxidation, the sulphur atom becomes a new stereogenic center, and two stable diastereoisomers of L-Met sulfoxide exist. A fundamental discovery revealed the existence of two unrelated families of enzymes, MsrA and MsrB, whose members display opposite stereospecificity of reduction for the two sulfoxides. The importance of Msrs is additionally emphasized by the discovery that one of the only 25 selenoproteins expressed in humans is a Msr. The milestones on the road that led to the discovery and characterization of this group of antioxidant enzymes are recounted in this review.
L-蛋氨酸(L-Met)是唯一含硫的蛋白质氨基酸,与半胱氨酸一起。它是所有已知生物中蛋白质合成的起始氨基酸,这凸显了其重要性。无论是游离的还是插入蛋白质中的 L-Met,其硫醚部分都容易氧化,形成 L-Met 亚砜。亚砜不能插入蛋白质中,而蛋白质中 L-Met 的氧化通常会导致受影响分子的生物活性丧失。重要的发现揭示了在大鼠中存在一种还原游离 L-Met 亚砜的代谢途径,随后在大肠杆菌中存在一种将蛋白质中插入的 L-Met 亚砜还原的酶促途径。氧化后,硫原子成为新的手性中心,L-Met 亚砜存在两种稳定的非对映异构体。一项基本发现揭示了存在两个不相关的 MsrA 和 MsrB 酶家族,其成员对两种亚砜表现出相反的立体选择性还原。Msrs 的重要性还体现在人类表达的仅 25 种硒蛋白之一是 Msr 这一发现上。本文回顾了发现和表征这组抗氧化酶的里程碑事件。