Hamburg Daisy-Malloy, Suh Moo-Jin, Limbach Patrick A
Rieveschl Laboratories for Mass Spectrometry, Department of Chemistry, PO Box 210172, University of Cincinnati, Cincinnati, OH 45221.
Biopolymers. 2009 Jun;91(6):410-22. doi: 10.1002/bip.21161.
Our understanding of the structural organization of ribosome assembly intermediates, in particular those intermediates that result from misfolding leading to their eventual degradation within the cell, is limited because of the lack of methods available to characterize assembly intermediate structures. Because conventional structural approaches, such as NMR, X-ray crystallography, and cryo-EM, are not ideally suited to characterize the structural organization of these flexible and sometimes heterogeneous assembly intermediates, we have set out to develop an approach combining limited proteolysis with matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) that might be applicable to ribonucleoprotein complexes as large as the ribosome. This study focuses on the limited proteolysis behavior of appropriately assembled ribosome subunits. Isolated subunits were analyzed using limited proteolysis and MALDI-MS and the results were compared with previous data obtained from 70S ribosomes. Generally, ribosomal proteins were found to be more stable in 70S ribosomes than in their isolated subunits, consistent with a reduction in conformational flexibility on subunit assembly. This approach demonstrates that limited proteolysis combined with MALDI-MS can reveal structural changes to ribosomes on subunit assembly or disassembly, and provides the appropriate benchmark data from 30S, 50S, and 70S proteins to enable studies of ribosome assembly intermediates. (c) 2009 Wiley Periodicals, Inc. Biopolymers 91: 410-422, 2009.
由于缺乏可用于表征核糖体组装中间体结构的方法,我们对核糖体组装中间体的结构组织的理解有限,特别是那些因错误折叠而最终在细胞内降解的中间体。由于传统的结构分析方法,如核磁共振(NMR)、X射线晶体学和冷冻电镜,并不非常适合表征这些灵活且有时异质的组装中间体的结构组织,我们着手开发一种将有限蛋白酶解与基质辅助激光解吸/电离质谱(MALDI-MS)相结合的方法,该方法可能适用于核糖体这样大的核糖核蛋白复合物。本研究聚焦于适当组装的核糖体亚基的有限蛋白酶解行为。使用有限蛋白酶解和MALDI-MS对分离出的亚基进行分析,并将结果与先前从70S核糖体获得的数据进行比较。一般来说,发现核糖体蛋白在70S核糖体中比在其分离的亚基中更稳定,这与亚基组装时构象灵活性的降低一致。该方法表明,有限蛋白酶解与MALDI-MS相结合可以揭示核糖体在亚基组装或拆卸时的结构变化,并提供来自30S、50S和70S蛋白的适当基准数据,以开展对核糖体组装中间体的研究。(c)2009年威利期刊公司。生物聚合物91: 410 - 422,2009年。