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来自嗜盐蓝藻植物盐生隐球藻的1,5-二磷酸核酮糖羧化酶。

Ribulose 1,5-bisphosphate carboxylase from the halophilic cyanobacterium Aphanothece halophytica.

作者信息

Asami S, Takabe T, Akazawa T, Codd G A

出版信息

Arch Biochem Biophys. 1983 Sep;225(2):713-21. doi: 10.1016/0003-9861(83)90082-6.

DOI:10.1016/0003-9861(83)90082-6
PMID:6414378
Abstract

Various structural and functional properties of ribulose 1,5-bisphosphate carboxylase/oxygenase (RuBisCO) isolated from the halophilic cyanobacterium (blue-green alga) Aphanothece halophytica were reexamined. The ready dissociation of this algal RuBisCO during sedimentation in a linear sucrose density gradient was observed. Low NaCl concentrations promote the dissociation of small subunit (B) from the original native enzyme molecule as evidenced by the sucrose density gradient centrifugation and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. It is thus possible that the intracellular osmoticum of A. halophytica might influence the structural integrity and activity of RuBisCO. The low residual carboxylase activity ascribed to the catalytic core, an oligomer form of the large subunit (A) apparently deficient in small subunit (B), was found to be markedly stimulated by a protein component which appears identical to subunit B. The purification and structural characterization of the catalytic core and subunit B were attempted by step-wise column chromatography on DEAE-cellulose, Utrogel AcA 34, Sephadex G-75, and hydroxylapatite, and at the final stage each component was purified to near homogeneity, although the catalytic core is still associated with a small quantity of subunit B. The addition of subunit B to the catalytic core does not alter the Km (HCO-3, RuBP) values, but Vmax values are markedly enhanced. Sucrose density gradient centrifugation gave a value of 16 S for the catalytic core. The molecular weights of the monomeric forms of the catalytic core (subunit A) and subunit B were 5.0 X 10(4) and 1.4 X 10(4), respectively.

摘要

对从嗜盐蓝藻(蓝绿藻)盐生隐球藻中分离出的1,5-二磷酸核酮糖羧化酶/加氧酶(RuBisCO)的各种结构和功能特性进行了重新研究。观察到这种藻类RuBisCO在线性蔗糖密度梯度沉降过程中易于解离。低NaCl浓度会促进小亚基(B)从原始天然酶分子上解离,这通过蔗糖密度梯度离心和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳得以证明。因此,盐生隐球藻的细胞内渗透压可能会影响RuBisCO的结构完整性和活性。归因于催化核心(一种明显缺乏小亚基(B)的大亚基(A)的寡聚体形式)的低残留羧化酶活性,被一种似乎与亚基B相同的蛋白质成分显著刺激。尝试通过在DEAE-纤维素、优球蛋白AcA 34、葡聚糖G-75和羟基磷灰石上进行分步柱色谱法来纯化和表征催化核心和亚基B,在最后阶段,每个组分都被纯化至接近均一,尽管催化核心仍与少量亚基B相关联。向催化核心中添加亚基B不会改变Km(HCO₃⁻,RuBP)值,但Vmax值会显著提高。蔗糖密度梯度离心得出催化核心的值为16 S。催化核心(亚基A)和亚基B的单体形式的分子量分别为5.0×10⁴和1.4×10⁴。

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Ribulose 1,5-bisphosphate carboxylase from the halophilic cyanobacterium Aphanothece halophytica.来自嗜盐蓝藻植物盐生隐球藻的1,5-二磷酸核酮糖羧化酶。
Arch Biochem Biophys. 1983 Sep;225(2):713-21. doi: 10.1016/0003-9861(83)90082-6.
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Factors affecting the dissociation and reconstitution of ribulose-1,5-bisphosphate carboxylase/oxygenase from Aphanothece halophytica.影响盐生隐球藻中1,5-二磷酸核酮糖羧化酶/加氧酶解离与重组的因素
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Essentiality of the small subunit (B) in the catalysis of RuBP carboxylase/oxygenase is not related to substrate-binding in the large subunit (A).核酮糖-1,5-二磷酸羧化酶/加氧酶催化作用中,小亚基(B)的必需性与大亚基(A)中的底物结合无关。
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