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嗜酸热古菌腾格里热球菌 S5(T) 的热体素具有独特的对称性和有限的肽折叠活性。

Distinct symmetry and limited peptide refolding activity of the thermosomes from the acidothermophilic archaea Acidianus tengchongensis S5(T).

机构信息

Institute of Microbiology, Chinese Academy of Sciences, Beijing, PR China.

出版信息

Biochem Biophys Res Commun. 2010 Mar 5;393(2):228-34. doi: 10.1016/j.bbrc.2010.01.106. Epub 2010 Feb 1.

DOI:10.1016/j.bbrc.2010.01.106
PMID:20117082
Abstract

Recombinant thermosomes from the Acidianus tengchongensis strain S5(T) were purified to homogeneity and assembled in vitro into homo-oligomers (rATcpnalpha or rATcpnbeta) and hetero-oligomers (rATcpnalphabeta). The symmetries of these complexes were determined by electron microscopy and image analysis. The rATcpnalpha homo-oligomer was shown to possess 8-fold symmetry while both rATcpnbeta and rATcpnalphabeta oligomers adopted 9-fold symmetry. rATcpnalphabeta oligomers were shown to contain the alpha and beta subunits in a 1:2 ratio. All of the complexes prevented the irreversible inactivation of yeast alcohol dehydrogenase at 55 degrees C and completely prevented the formation of aggregates during thermal inactivation of citrate synthase at 45 degrees C. All rATcpn complexes showed trace ATP hydrolysis activity. Furthermore, rATcpnbeta sequestered fully chemically denatured substrates (GFP and thermophilic malic dehydrogenase) in vitro without refolding them in an ATP-dependent manner. This property is similar to previously reported properties of chaperonins from Sulfolobus tokodaii and Sulfolobus acidocaldarius. These features are consistent with the slow growth rates of these species of archaea in their native environment.

摘要

来自腾格里Acidianus 菌株 S5(T)的重组 Thermosome 被纯化至均一性,并在体外组装成同聚体(rATcpnalpha 或 rATcpnbeta)和杂聚体(rATcpnalphabeta)。这些复合物的对称性通过电子显微镜和图像分析来确定。rATcpnalpha 同聚体被证明具有 8 重对称性,而 rATcpnbeta 和 rATcpnalphabeta 寡聚体采用 9 重对称性。rATcpnalphabeta 寡聚体被证明含有 alpha 和 beta 亚基的 1:2 比例。所有复合物均能防止酵母醇脱氢酶在 55°C 时不可逆失活,并在 45°C 时柠檬酸合酶热失活过程中完全防止聚集体的形成。所有 rATcpn 复合物均显示出痕量的 ATP 水解活性。此外,rATcpnbeta 以非依赖 ATP 的方式在体外将完全化学变性的底物(GFP 和嗜热苹果酸脱氢酶)隔离,而不使其重折叠。这一特性类似于先前报道的来自 Sulfolobus tokodaii 和 Sulfolobus acidocaldarius 的 chaperonins 的特性。这些特征与这些古菌在其自然环境中的缓慢生长速度一致。

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