Dey D, Bochkariov D E, Jokhadze G G, Traut R R
Department of Biological Chemistry, School of Medicine, University of California, Davis 95616, USA.
J Biol Chem. 1998 Jan 16;273(3):1670-6. doi: 10.1074/jbc.273.3.1670.
Five different variants of protein L7/L12, each with a single cysteine substitution at a selected site, were produced, modified with 125I-N-[4-(p-azidosalicylamido)-butyl]-3-(2'-pyridyldithio)propion amide, a radiolabeled, sulfhydryl-specific, heterobifunctional, cleavable photocross-linking reagent that transfers radiolabel to the target molecule upon reduction of the disulfide bond. The proteins were reconstituted with core particles depleted of wild type L7/L12 to yield 70 S ribosomes. Cross-linked molecules were identified and quantified by the radiolabel. No cross-linking of RNA was detected. Two sites in the dimeric N-terminal domain, Cys-12 and Cys-33, cross-linked strongly to L10 and in lower yield to L11 but to no other proteins. The three sites in the globular C-terminal domain all cross-linked strongly to L11 and, in lower yield, to L10. Weaker cross-linking to 50 S proteins L2 and L5 occurred from all three C-terminal domain locations. The 30 S ribosomal proteins S2, S3, S7, S14, S18 were also cross-linked from all three of these sites. Binding of the ternary complex [14C]Phe-tRNA-elongation factor Tu.guanyl-5'-yl imidodiphosphate) but not [14C]Phe-tRNA.elongation factor Tu.GDP.kirromycin increased labeling of L2, L5, and all of the 30 S proteins. These results imply the flexibility of L7/L12 and the transient proximity of three surfaces of the C-terminal domain with the base of the stalk, the peptidyl transferase domain, and the head of the 30 S subunit.
制备了五种不同的L7/L12蛋白变体,每个变体在选定位点有一个半胱氨酸取代,用125I-N-[4-(对叠氮水杨酰胺基)-丁基]-3-(2'-吡啶二硫基)丙酰胺进行修饰,这是一种放射性标记的、巯基特异性的、异双功能的、可裂解的光交联试剂,在二硫键还原时将放射性标记转移到靶分子上。将这些蛋白质与去除野生型L7/L12的核心颗粒重组,以产生70 S核糖体。通过放射性标记鉴定和定量交联分子。未检测到RNA的交联。二聚体N端结构域中的两个位点,即Cys-12和Cys-33,与L10强烈交联,与L11的交联产率较低,但与其他蛋白质无交联。球状C端结构域中的三个位点均与L11强烈交联,与L10的交联产率较低。从所有三个C端结构域位置都观察到与50 S蛋白L2和L5的较弱交联。30 S核糖体蛋白S2、S3、S7、S14、S18也从所有这三个位点发生交联。三元复合物[14C]苯丙氨酰-tRNA-延伸因子Tu·鸟苷-5'-基亚氨基二磷酸)而非[14C]苯丙氨酰-tRNA·延伸因子Tu·GDP·奇霉素的结合增加了L2、L5和所有30 S蛋白的标记。这些结果表明L7/L12具有灵活性,并且C端结构域的三个表面与柄的基部、肽基转移酶结构域和30 S亚基的头部存在瞬时接近。