4.3 Article

Twenty years of t-loops: A case study for the importance of collaboration in molecular biology

期刊

DNA REPAIR
卷 94, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.dnarep.2020.102901

关键词

T-loop; R-loop; T-circle; Super resolution microscopy; Double strand breaks; DNA repair; Telomeres

资金

  1. NIH [ES013373, 1R01ES031635-01]
  2. VEGA [1/0061/20]
  3. APVV [19-0068]
  4. Australian National Health and Medical Research Council [1162886, 1185870]
  5. Neil and Norma Hill Foundation
  6. National Health and Medical Research Council of Australia [1185870, 1162886] Funding Source: NHMRC

向作者/读者索取更多资源

Collaborative studies open doors to breakthroughs otherwise unattainable by any one laboratory alone. Here we describe the initial collaboration between the Griffith and de Lange laboratories that led to thinking about the telomere as a DNA template for homologous recombination, the proposal of telomere looping, and the first electron micrographs of t-loops. This was followed by collaborations that revealed t-loops across eukaryotic phyla. The Griffith and Tomgka/Nosek collaboration revealed circular telomeric DNA (t-circles) derived from the linear mitochondrial chromosomes of nonconventional yeast, which spurred discovery of t-circles in ALT-positive human cells. Collaborative work between the Griffith and McEachern labs demonstrated t-loops and t-circles in a series of yeast species. The de Lange and Zhuang laboratories then applied super-resolution light microscopy to demonstrate a genetic role for TRF2 in loop formation. Recent work from the Griffith laboratory linked telomere transcription with t-loop formation, providing a new model of the t-loop junction. A recent collaboration between the Cesare and Gaus laboratories utilized super-resolution light microscopy to provide details about t-loops as protective elements, followed by the Boulton and Cesare laboratories showing how cell cycle regulation of TRF2 and RTEL enables t-loop opening and reformation to promote telomere replication. Twenty years after the discovery of t-loops, we reflect on the collective history of their research as a case study in collaborative molecular biology.

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