Body A, Brownstein B H
J Bacteriol. 1978 Jan;133(1):251-5. doi: 10.1128/jb.133.1.251-255.1978.
Cell extracts prepared by osmotic lysis of protoplasts were analyzed by sucrose gradient sedimentation. In the absence of detergents, ribosomal precursor particles were found in a gradient fraction which sedimented faster than mature 50S subunits and in two other fractions coincident with mature 50S and 30S ribosomal subunits. Phospholipid, an indicator of membrane, was shown to be associated with only the fastest-sedimenting ribosomal precursor particle fraction. After the extracts were treated with detergents, all phospholipid was found at the top of the gradients. Brij 58, Triton X-100, and Nonidet P-40 did not cause a change in the sedimentation values of precursors; however, the detergents deoxycholate or LOC (Amway Corp.) disrupted the fastest-sedimenting precursor and converted the ribosomal precursor subunits which sedimented at the 50S and 30S positions to five different classes of more slowly sedimenting particles. Earlier reports on the in vivo assembly of ribosomal subunits have shown that several stages of ribosomal precursor subunits exist, and, in the presence of the detergents deoxycholate and LOC, which had been used to prepare cell extracts, the precursors sedimented more slowly. Our data are consistent with the hypothesis that those detergents selectively modify the structure of ribosomal precursors and lend further support to the hypothesis that the in vivo ribosomal precursor subunits have 50S and 30S sedimentation values. In addition, these data support the idea that the ribosomal precursor particles found in the fast-sedimenting fraction may constitute a unique precursor fraction.
通过原生质体渗透裂解制备的细胞提取物经蔗糖梯度沉降分析。在没有去污剂的情况下,核糖体前体颗粒存在于一个沉降速度比成熟50S亚基快的梯度组分中,以及另外两个与成熟50S和30S核糖体亚基一致的组分中。磷脂作为膜的指标,仅与沉降最快的核糖体前体颗粒组分相关。提取物用去污剂处理后,所有磷脂都出现在梯度顶部。Brij 58、Triton X-100和Nonidet P-40不会导致前体沉降值发生变化;然而,去污剂脱氧胆酸盐或LOC(安利公司)破坏了沉降最快的前体,并将在50S和30S位置沉降的核糖体前体亚基转化为五类沉降更慢的不同颗粒。早期关于核糖体亚基体内组装的报道表明,核糖体前体亚基存在几个阶段,并且,在用于制备细胞提取物的去污剂脱氧胆酸盐和LOC存在的情况下,前体沉降得更慢。我们的数据与这些去污剂选择性修饰核糖体前体结构的假设一致,并进一步支持体内核糖体前体亚基具有50S和30S沉降值的假设。此外,这些数据支持了在快速沉降组分中发现的核糖体前体颗粒可能构成一个独特前体组分的观点。