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Suppression of Sup35 amyloid fibril formation by group II chaperonin from <i>Thermoplasma acidophilum</i>
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作者 Kentaro Noi Aya Kitamura +4 位作者 Hidenori Hirai Kunihiro Hongo Toshihiko Sakurai Tomohiro Mizobata Yasushi Kawata 《American Journal of Molecular Biology》 2012年第3期265-275,共11页
The Group II chaperonin from Thermoplasma acidophilum was added to the in vitro amyloid fibrillation reaction of yeast Sup35NM protein to assess its effects. By measuring the formation of Sup35NM fibrils in real time ... The Group II chaperonin from Thermoplasma acidophilum was added to the in vitro amyloid fibrillation reaction of yeast Sup35NM protein to assess its effects. By measuring the formation of Sup35NM fibrils in real time using the fluorescent dye Thioflavin T, we found that the addition of T. acidophilum-cpn α16, α1, and β1 proteins suppressed fibril formation. Addition of a 0.1 molar-equivalent T. acidophilum-cpn α16 relative to Sup35NM prolonged the initial lag-time of fibril formation and decreased the rate of fibril extension. Addition of 1 or 3 molar-equivalents of T. acidophilum-cpn monomers also produced a similar effect. Delayed addition of these chaperonins after the initial lag phase did not suppress fibril formation. Interestingly, these effects were also observed upon adding only the apical domain segments of α and β-subunits, and we also found that deletion of the helical protrusion in the apical domain of these segments led to an abolishment of the suppression effects. A synthetic peptide whose sequence corresponded to the helical protrusion also displayed a suppression effect, which indicated that archaeal group II chaperonin binds to Sup35NM through the helical protrusion of the apical domain. These findings suggest that group II chaperonin might be actively involved in suppressing amyloid fibril formation, in addition to acting as a protein folding assistant. 展开更多
关键词 Group II CHAPERONIN Monomer thermoplasma Acidophilum Structure and Function SUPPRESSION of AMYLOID Fibril Sup35NM AMYLOID
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热原体属的一个新种
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作者 李雅芹 刘国振 钟慧芳 《微生物学报》 CAS CSCD 北大核心 1994年第4期255-260,共6页
从四川省某煤矿发热的煤矸石堆上,分离到一株极端嗜热嗜酸细菌(ES-23),其生长的温度范围为50—75℃,最适70℃;生长的pH范围为1.0—5.0,最适pH2.0.该菌株好氧,兼性自养,既能利用有机物异养生长,又能利用元素硫氧化产硫酸获得能量、固定... 从四川省某煤矿发热的煤矸石堆上,分离到一株极端嗜热嗜酸细菌(ES-23),其生长的温度范围为50—75℃,最适70℃;生长的pH范围为1.0—5.0,最适pH2.0.该菌株好氧,兼性自养,既能利用有机物异养生长,又能利用元素硫氧化产硫酸获得能量、固定空气中二氧化碳自养生长.革兰氏染色阴性.细胞球形或椭圆形,直径0.9—1.5μm.自养生长时细胞外有类似纤毛的附属物.细胞外被由分三层的膜构成,无细胞壁.膜脂中醚键代替酯键.DNA中G+C含量为38mol%.根据这些特征,鉴定此菌株为热原体属(Thermoplasma)的一个新种,定名为氧化硫热原体(Thermoplasma thiooxidans nov.sp.). 展开更多
关键词 热原体 嗜热嗜酸菌 古细菌 新种
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