Kushad M M, Richardson D G, Ferro A J
Department of Horticulture, Oregon State University, Corvallis, Oregon 97331-3804.
Plant Physiol. 1983 Oct;73(2):257-61. doi: 10.1104/pp.73.2.257.
The recycling of 5-methylthioribose (MTR) to methionine in avocado (Persea americana Mill, cv Hass) and tomato (Lycopersicum esculentum Mill, cv unknown) was examined. [(14)CH(3)]MTR was not metabolized in cell free extract from avocado fruit. Either [(14)CH(3)]MTR plus ATP or [(14)CH(3)]5-methylthioribose-1-phosphate (MTR-1-P) alone, however, were metabolized to two new products by these extracts. MTR kinase activity has previously been detected in these fruit extracts. These data indicate that MTR must be converted to MTR-1-P by MTR kinase before further metabolism can occur. The products of MTR-1-P metabolism were tentatively identified as alpha-keto-gamma-methylthiobutyric acid (alpha-KMB) and alpha-hydroxy-gamma-methylthiobutyric acid (alpha-HMB) by chromatography in several solvent systems. [(35)S]alpha-KMB was found to be further metabolized to methionine and alpha-HMB by these extracts, whereas alpha-HMB was not. However, alpha-HMB inhibited the conversion of alpha-KMB to methionine. Both [U-(14)C]alpha-KMB and [U-(14)C]methionine, but not [U-(14)C]alpha-HMB, were converted to ethylene in tomato pericarp tissue. In addition, aminoethoxyvinylglycine inhibited the conversion of alpha-KMB to ethylene. These data suggest that the recycling pathway leading to ethylene is MTR --> MTR-1-P --> alpha-KMB --> methionine --> S-adenosylmethionine --> 1-aminocyclopropane-1-carboxylic acid --> ethylene.
研究了鳄梨(Persea americana Mill,品种哈斯)和番茄(Lycopersicum esculentum Mill,品种未知)中5-甲基硫代核糖(MTR)向蛋氨酸的循环利用。[(14)CH(3)]MTR在鳄梨果实的无细胞提取物中未被代谢。然而,[(14)CH(3)]MTR加ATP或单独的[(14)CH(3)]5-甲基硫代核糖-1-磷酸(MTR-1-P)被这些提取物代谢为两种新产物。此前已在这些果实提取物中检测到MTR激酶活性。这些数据表明,MTR必须先被MTR激酶转化为MTR-1-P,才能进一步发生代谢。通过在几种溶剂系统中的色谱分析,MTR-1-P代谢产物初步鉴定为α-酮基-γ-甲基硫代丁酸(α-KMB)和α-羟基-γ-甲基硫代丁酸(α-HMB)。这些提取物发现[(35)S]α-KMB进一步代谢为蛋氨酸和α-HMB,而α-HMB则未代谢。然而,α-HMB抑制α-KMB向蛋氨酸的转化。[U-(14)C]α-KMB和[U-(14)C]蛋氨酸,但不是[U-(14)C]α-HMB,都在番茄果皮组织中转化为乙烯。此外,氨基乙氧基乙烯基甘氨酸抑制α-KMB向乙烯的转化。这些数据表明,导致乙烯的循环途径是MTR→MTR-1-P→α-KMB→蛋氨酸→S-腺苷甲硫氨酸→1-氨基环丙烷-1-羧酸→乙烯。