Raices Marcela, Verdun Ramiro E, Compton Sarah A, Haggblom Candy I, Griffith Jack D, Dillin Andrew, Karlseder Jan
The Salk Institute for Biological Studies, 10010 North Torrey Pines Road., La Jolla, CA 92037, USA.
Cell. 2008 Mar 7;132(5):745-57. doi: 10.1016/j.cell.2007.12.039.
Single-strand extensions of the G strand of telomeres are known to be critical for chromosome-end protection and length regulation. Here, we report that in C. elegans, chromosome termini possess 3' G-strand overhangs as well as 5' C-strand overhangs. C tails are as abundant as G tails and are generated by a well-regulated process. These two classes of overhangs are bound by two single-stranded DNA binding proteins, CeOB1 and CeOB2, which exhibit specificity for G-rich or C-rich telomeric DNA. Strains of worms deleted for CeOB1 have elongated telomeres as well as extended G tails, whereas CeOB2 deficiency leads to telomere-length heterogeneity. Both CeOB1 and CeOB2 contain OB (oligo-saccharide/oligo-nucleotide binding) folds, which exhibit structural similarity to the second and first OB folds of the mammalian telomere binding protein hPOT1, respectively. Our results suggest that C. elegans telomere homeostasis relies on a novel mechanism that involves 5' and 3' single-stranded termini.
已知端粒G链的单链延伸对于染色体末端保护和长度调节至关重要。在此,我们报道在秀丽隐杆线虫中,染色体末端同时拥有3' G链悬突和5' C链悬突。C尾与G尾一样丰富,并且由一个调控良好的过程产生。这两类悬突由两种单链DNA结合蛋白CeOB1和CeOB2结合,它们对富含G或富含C的端粒DNA表现出特异性。缺失CeOB1的线虫品系具有延长的端粒以及延长的G尾,而CeOB2缺陷则导致端粒长度的异质性。CeOB1和CeOB2都包含OB(寡糖/寡核苷酸结合)折叠,它们分别与哺乳动物端粒结合蛋白hPOT1的第二个和第一个OB折叠具有结构相似性。我们的结果表明,秀丽隐杆线虫的端粒稳态依赖于一种涉及5'和3'单链末端的新机制。