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从黑麦幼苗中纯化的叶绿素酶对红螺菌的载色体和原生质球的捕光细菌叶绿素的作用

Action of chlorophyllase purified from rye seedlings on light-harvesting bacteriochlorophyll of chromatophores and spheroplasts from Rhodospirillum rubrum.

作者信息

Tanaka K, Kakuno T, Yamashita J, Horio T

出版信息

J Biochem. 1983 Jan;93(1):159-67. doi: 10.1093/oxfordjournals.jbchem.a134150.

Abstract
  1. The chlorophyllase [EC 3.1.1.14] purified from greened rye seedlings hydrolyzed the bacteriochlorophyll isolated from Rhodospirillum rubrum, but not the pigment bound to the membrane of chromatophores or spheroplasts from the bacterium. 2. Acetone, if added at such concentrations that the bound bacteriochlorophyll would not be solubilized, enabled the enzyme to hydrolyze the bound pigment. The acetone concentrations required for half the maximum hydrolysis rates were 16% with chromatophores and 7% with spheroplasts. 3. The enzymic hydrolysis of the bound bacteriochlorophyll in the presence of acetone removed bacteriochlorophyllide from the membrane, leaving its esterifying alcohol, possibly all-trans-geranylgeraniol, in situ. 4. Washing of chromatophores with 30% acetone removed about 10% of the bound bacteriochlorophyll. The bound pigment remaining after washing was not hydrolyzed by the enzyme unless acetone was added. 5. It seems possible that light-harvesting bacteriochlorophyll was mostly, if not all, bound to the inner surface of chromatophores (the outer surface of spheroplasts), having its esterifying alcohol residue buried in the membrane and its porphyrin residue emerging from the membrane into the inside solution; thus, chlorophyllase could not make contact with the ester linkage between the esterifying alcohol and porphyrin moieties of the pigment unless the esterifying alcohol residue was partly exposed.
摘要
  1. 从绿化黑麦幼苗中纯化得到的叶绿素酶[EC 3.1.1.14]能水解从深红红螺菌中分离出的细菌叶绿素,但不能水解该细菌的载色体或原生质球膜结合的色素。2. 若加入丙酮的浓度不至于使结合态细菌叶绿素溶解,酶就能水解结合态色素。使水解速率达到最大值一半时所需的丙酮浓度,载色体为16%,原生质球为7%。3. 在丙酮存在下,结合态细菌叶绿素的酶促水解从膜上除去了细菌叶绿素酸,而其酯化醇(可能是全反式香叶基香叶醇)仍留在原位。4. 用30%丙酮洗涤载色体可除去约10%的结合态细菌叶绿素。洗涤后残留的结合态色素,除非加入丙酮,否则不会被该酶水解。5. 捕光细菌叶绿素似乎大部分(如果不是全部)结合在载色体的内表面(原生质球的外表面),其酯化醇残基埋在膜中,卟啉残基从膜中伸向内部溶液;因此,除非酯化醇残基部分暴露,叶绿素酶无法与色素的酯化醇和卟啉部分之间的酯键接触。

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