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卡氏棘阿米巴的化学发光

Chemiluminescence of Acanthamoeba castellanii.

作者信息

Lloyd D, Boveris A, Reiter R, Filipkowski M, Chance B

出版信息

Biochem J. 1979 Oct 15;184(1):149-56. doi: 10.1042/bj1840149.

Abstract
  1. Chemiluminescence of Acanthomoeba castellanii in the presence of O2 was of similar intensity in organisms harvested early or late during exponential growth [when cyanide (1 mM) stimulates or inhibits respiration respectively]. 2. Cyanide (up to 1.5 mM) stimulated photoemission in both types of organism by 250--300 photons/s per 10(7) cells above the value observed under aerobic conditions. 3. 'Dibromothymoquinone' (2,5-dibromo-6-isopropyl-3-methyl-p-benzoquinone) (up to 80 microM) further increased chemiluminescence. 4. Similar responses were also demonstrated in whole homogenates and in subcellular fractions; 36% of the chemiluminescence was provided by a fraction sedimenting at 100000g-min, and 20% in that fraction that was non-sedimentable at 200000g-min. 5. Mitochondrial substrates (succinate, 2-oxoglutarate, NADH) in the presence or absence of ADP and Pi or peroxisomal substrates (glycollate, urate or ethanol) gave no increases in light emission by whole homogenates or in any of the fractions. 6. It is suggested that reactions responsible for production of chemiluminescence are those primarily producing superoxide anions and leading to lipid peroxidation and singlet-oxygen formation. Photoemission enhancement and superoxide dismutase inhibition showed similar cyanide concentration-dependencies.
摘要
  1. 在指数生长早期或晚期收获的棘阿米巴中,在有O₂存在的情况下,其化学发光强度相似[此时氰化物(1 mM)分别刺激或抑制呼吸作用]。2. 氰化物(高达1.5 mM)使两种类型的生物体中的光发射在有氧条件下观察到的值之上,每10⁷个细胞每秒增加250 - 300个光子。3. “二溴百里醌”(2,5 - 二溴 - 6 - 异丙基 - 3 - 甲基对苯醌)(高达80 μM)进一步增强了化学发光。4. 在全匀浆和亚细胞组分中也观察到了类似的反应;100000g - min沉降组分提供了36%的化学发光,200000g - min不可沉降的组分提供了20%的化学发光。5. 线粒体底物(琥珀酸、2 - 氧代戊二酸、NADH)在有无ADP和Pi的情况下,或过氧化物酶体底物(乙醇酸、尿酸或乙醇),均未使全匀浆或任何组分的发光增加。6. 有人提出,负责化学发光产生的反应主要是产生超氧阴离子并导致脂质过氧化和单线态氧形成的反应。光发射增强和超氧化物歧化酶抑制表现出相似的氰化物浓度依赖性。

相似文献

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Chemiluminescence of Acanthamoeba castellanii.卡氏棘阿米巴的化学发光
Biochem J. 1979 Oct 15;184(1):149-56. doi: 10.1042/bj1840149.

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