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嗜热嗜酸古细菌嗜酸热硫化叶菌核糖体亚基的颗粒重量和蛋白质组成

Particle weights and protein composition of the ribosomal subunits of the extremely thermoacidophilic archaebacterium Caldariella acidophila.

作者信息

Londei P, Teichner A, Cammarano P, De Rosa M, Gambacorta A

出版信息

Biochem J. 1983 Feb 1;209(2):461-70. doi: 10.1042/bj2090461.

Abstract
  1. The ribosomal subunits of one thermoacidophilic archaebacterium (Caldariella acidophila) and of two reference eubacterial species (Bacillus acidocaldarius, Escherichia coli) were compared with respect to ribosome mass and protein composition by (i) equilibrium-density sedimentation of the particles in CsCl and (ii) gel-electrophoretic estimations of the molecular weights of the protein and the rRNA. 2. By either procedure, it is estimated that synthetically active archaebacterial 30S subunits (52% protein by wt.) are appreciably richer in protein than the corresponding eubacterial particles (31% protein by wt.) 3. The greater protein content of the archaebacterial 30S subunits is accounted for by both a larger number and a greater average molecular weight of the subunit proteins; specifically, C. acidophila 30S subunits yield 28 proteins whose combined mass is 0.6 X 10(6) Da, compared with 20 proteins totalling 0.35 X 10(6) Da mass for eubacterial 30S subunits. 4. No differences in protein number are detected among the large subunits, but C. acidophila 50S subunits exhibit a greater number-average molecular weight of their protein components than do eubacterial 50S particles. 5. Particle weights estimated by either buoyant-density data, or molecular weights of rRNA plus protein, agree to within less than 2%. By either procedure C. acidophila 30S subunits 1.15 X 10(6) Da mass) are estimated to be about 300 000 Da heavier than their eubacterial counterparts (0.87 X 10(6) Da mass); a smaller difference. 0.15 X 10(6) Da, exists between the archaebacterial and the eubacterial 50S subunits (respectively 1.8 X 10(6) and 1.65 X 10(6) Da). It is concluded that the heavier-than-eubacterial mass of the C. acidophila ribosomes resides principally in their smaller subunits.
摘要
  1. 通过以下两种方法,对一种嗜热嗜酸古细菌(嗜酸热硫化叶菌)以及两种作为参照的真细菌(嗜酸芽孢杆菌、大肠杆菌)的核糖体亚基在核糖体质量和蛋白质组成方面进行了比较:(i)通过在氯化铯中对颗粒进行平衡密度沉降;(ii)通过凝胶电泳估算蛋白质和核糖体RNA的分子量。2. 通过这两种方法中的任何一种,都可以估计出具有合成活性的古细菌30S亚基(按重量计蛋白质含量为52%)比相应的真细菌颗粒(按重量计蛋白质含量为31%)蛋白质含量明显更高。3. 古细菌30S亚基中较高的蛋白质含量是由亚基蛋白质数量较多以及平均分子量较大共同导致的;具体而言,嗜酸热硫化叶菌30S亚基产生28种蛋白质,其总质量为0.6×10⁶道尔顿,相比之下,真细菌30S亚基有20种蛋白质,总质量为0.35×10⁶道尔顿。4. 在大亚基之间未检测到蛋白质数量上的差异,但嗜酸热硫化叶菌50S亚基的蛋白质组分的数均分子量比真细菌50S颗粒更大。5. 通过浮力密度数据或核糖体RNA加蛋白质的分子量估算出的颗粒重量,两者之间的差异不到2%。通过这两种方法中的任何一种,嗜酸热硫化叶菌30S亚基(质量为1.15×10⁶道尔顿)估计比其真细菌对应物(质量为0.87×10⁶道尔顿)重约300000道尔顿;古细菌和真细菌50S亚基之间的差异较小,为0.15×10⁶道尔顿(分别为1.8×10⁶道尔顿和1.65×10⁶道尔顿)。结论是,嗜酸热硫化叶菌核糖体比真细菌核糖体更重的质量主要存在于其较小的亚基中。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aee3/1154113/cfc8a41376cd/biochemj00359-0182-a.jpg

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