Carlson D L, Skopp R, Price C M
Department of Chemistry, University of Nebraska, Lincoln, Nebraska 68588, USA.
Biochemistry. 1997 Dec 16;36(50):15900-8. doi: 10.1021/bi971833d.
The replication Telomere Protein, rTP, is a nuclear protein from the ciliate Euplotes crassus that appears to be a novel telomere replication factor. rTP shares extensive amino acid sequence identity with the two proteins that bind and protect the macronuclear telomeres from the ciliates Oxytricha and Euplotes. Since the most extended regions of conservation fall within the DNA-binding domains of the telomere-binding proteins, when rTP was first identified it was predicted to be another structural telomere-binding protein. However, subsequent research demonstrated that rTP transcripts accumulate only during DNA replication and the rTP protein localizes to the sites of DNA replication within Euplotes macronuclei. We have now expressed rTP in a heterologous expression system and have examined the DNA-binding properties of the recombinant protein. We show that rTP binds specifically to the G-strand of Euplotes telomeric DNA and hence has some of the same DNA-binding characteristics as the Euplotes and Oxytricha telomere-binding proteins. However, other aspects of rTP binding are unique. In particular, the protein exhibits a very high off-rate and can bind double-stranded DNA as well as internal tracts of telomeric sequence. We conclude that rTP and the telomere-binding proteins are members of a class of proteins that have a conserved DNA-binding motif tailored to bind the G-strand of telomeric DNA. However, the unique DNA-binding characteristics of rTP indicate that the protein has evolved to fulfil a specialized role during telomere replication.
复制端粒蛋白(rTP)是一种来自厚尾真核生物的核蛋白,似乎是一种新型的端粒复制因子。rTP与两种结合并保护大核端粒的蛋白(来自纤毛虫类的嗜热栖热菌和真核生物)具有广泛的氨基酸序列同一性。由于保守性最强的区域位于端粒结合蛋白的DNA结合域内,因此在首次鉴定rTP时,预计它是另一种结构性端粒结合蛋白。然而,随后的研究表明,rTP转录本仅在DNA复制期间积累,并且rTP蛋白定位于真核生物大核内的DNA复制位点。我们现在已经在异源表达系统中表达了rTP,并研究了重组蛋白的DNA结合特性。我们表明,rTP特异性结合真核生物端粒DNA的G链,因此具有与真核生物和嗜热栖热菌端粒结合蛋白相同的一些DNA结合特性。然而,rTP结合的其他方面是独特的。特别是,该蛋白表现出非常高的解离速率,并且可以结合双链DNA以及端粒序列的内部片段。我们得出结论,rTP和端粒结合蛋白是一类具有保守DNA结合基序的蛋白成员,该基序专门用于结合端粒DNA的G链。然而,rTP独特的DNA结合特性表明,该蛋白已经进化以在端粒复制过程中发挥特殊作用。