Persinger J, Bartholomew B
Department of Medical Biochemistry, School of Medicine, Southern Illinois University at Carbondale, Carbondale, Illinois 62901-4413, USA.
J Biol Chem. 1996 Dec 20;271(51):33039-46. doi: 10.1074/jbc.271.51.33039.
The structure of the Saccharomyces cerevisiae RNA polymerase III transcription complex on the SUP4 tRNATyr gene was probed at distances of approximately 10 to approximately 23 A from the C-5 methyl of thymidine in the major groove of DNA using photoreactive aryl azides attached to deoxyuridine by variable chain lengths. The nucleotide analogs contained an azidobenzoyl group attached with chain lengths that were incrementally increased by approximately 4. 3 A by inserting 1-3 glycine residues into the chain. Another photoreactive deoxyuridine analog was made that contained a butyl chain (ABU-dUMP) to assess the effect of the chain's hydrophobicity on its ability to photoaffinity label the transcription complex. These nucleotide analogs were incorporated at base pairs (bp) -26/-21, -17, or -3/-2 on the nontranscribed strand of the SUP4 tRNATyr gene along with an [alpha-32P]dNMP by primer extension using an immobilized single-stranded DNA template annealed to specific oligonucleotides. The 27-kDa subunit of TFIIIB or the TATA box binding protein was photoaffinity labeled at bp -26/-21 with nucleotide analogs containing a approximately 19- or approximately 23-A chain and not with shorter chains of approximately 10 to approximately 15 A in length. The B" subunit of TFIIIB (Mr = 90 kDa) was photoaffinity labeled at bps -26/-21 with DNA containing a approximately 14-A chain and not with shorter or longer chains. Cross-linking of the B" subunit was inhibited by binding of RNA polymerase III (Pol III) to the TFIIIB-DNA complex and suggested that Pol III binding causes a conformational change in the TFIIIB-DNA complex resulting in the displacement of the 90-kDa subunit at bps -26/-21. Next, the chain length dependence of photoaffinity labeling the 34-kDa subunit of Pol III at bps -17 and -3/-2 indicated that the 34-kDa subunit of Pol III is slightly removed from the major groove at bp -17 in the initiation complex and makes closer contact at bps -3/-2 in a stalled elongation complex.
利用通过可变链长连接到脱氧尿苷上的光反应性芳基叠氮化物,在距酿酒酵母SUP4 tRNATyr基因DNA大沟中胸腺嘧啶C-5甲基约10至约23埃的距离处,对酿酒酵母RNA聚合酶III转录复合物的结构进行了探测。核苷酸类似物含有一个叠氮苯甲酰基,其连接链长通过在链中插入1 - 3个甘氨酸残基而以约4.3埃的增量递增。制备了另一种光反应性脱氧尿苷类似物,其含有丁基链(ABU-dUMP),以评估链的疏水性对其光亲和标记转录复合物能力的影响。这些核苷酸类似物与[α-32P]dNMP一起,通过使用与特定寡核苷酸退火的固定化单链DNA模板进行引物延伸,掺入到SUP4 tRNATyr基因非转录链上的碱基对(bp)-26 / -21、-17或-3 / -2处。TFIIIB的27 kDa亚基或TATA盒结合蛋白在bp -26 / -21处被含有约19或约23埃链的核苷酸类似物光亲和标记,而不被长度约为10至约15埃的较短链标记。TFIIIB的B"亚基(Mr = 90 kDa)在bp -26 / -21处被含有约14埃链的DNA光亲和标记,而不被较短或较长链标记。RNA聚合酶III(Pol III)与TFIIIB - DNA复合物的结合抑制了B"亚基的交联,这表明Pol III的结合导致TFIIIB - DNA复合物发生构象变化,从而在bp -26 / -21处取代了90 kDa亚基。接下来,在bp -17和-3 / -2处对Pol III的34 kDa亚基进行光亲和标记的链长依赖性表明,在起始复合物中,Pol III的34 kDa亚基在bp -17处与大沟稍有距离,而在停滞的延伸复合物中,在bp -3 / -2处与大沟的接触更紧密。