Interactions of putative telomere-binding proteins in Arabidopsis thaliana: identification of functional TRF2 homolog in plants

. 2004 Dec 17 ; 578 (3) : 311-5.

Jazyk angličtina Země Anglie, Velká Británie Médium print

Typ dokumentu časopisecké články, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/pmid15589838
Odkazy

PubMed 15589838
DOI 10.1016/j.febslet.2004.11.021
PII: S0014-5793(04)01385-7
Knihovny.cz E-zdroje

Telomere-binding proteins are required for forming the functional structure of chromosome ends and regulating telomerase action. Although a number of candidate proteins have been identified by homology searches to plant genome databases and tested for their affinity to telomeric DNA sequences in vitro, there are minimal data relevant to their telomeric function. To address this problem, we made a collection of cDNAs of putative telomere-binding proteins of Arabidopsis thaliana to analyse their protein-protein interactions with the yeast two-hybrid system. Our results show that one myb-like protein, AtTRP1, interacts specifically with AtKu70, the latter protein having a previously described role in plant telomere metabolism. In analogy to the interaction between human Ku70 and TRF2 proteins, our results suggest that AtTRP1 is a likely homolog of TRF2. The AtTRP1 domain responsible for AtKu70 interaction occurs between amino acid sequence positions 80 and 269. The protein AtTRB1, a member of the single myb histone (Smh) family, shows self-interaction and interactions to the Smh family proteins AtTRB2 and AtTRB3. Protein AtTRB1 also interacts with AtPot1, the Arabidopsis homolog of oligonucleotide-binding-fold-containing proteins which bind G-rich telomeric DNA. In humans, the TRF1-complex recruits hPot1 to telomeres by protein-protein interactions where it is involved in telomere length regulation. Possibly, AtTRB1 has a similar role in recruiting AtPot1.

Citace poskytuje Crossref.org

Nejnovějších 20 citací...

Zobrazit více v
Medvik | PubMed

Completing the TRB family: newly characterized members show ancient evolutionary origins and distinct localization, yet similar interactions

. 2023 May ; 112 (1-2) : 61-83. [epub] 20230428

Tidying-up the plant nuclear space: domains, functions, and dynamics

. 2020 Aug 17 ; 71 (17) : 5160-5178.

Telomeres in Plants and Humans: Not So Different, Not So Similar

. 2019 Jan 16 ; 8 (1) : . [epub] 20190116

An armadillo-domain protein participates in a telomerase interaction network

. 2018 Jul ; 97 (4-5) : 407-420. [epub] 20180612

Tandem affinity purification of AtTERT reveals putative interaction partners of plant telomerase in vivo

. 2017 Jul ; 254 (4) : 1547-1562. [epub] 20161116

Telomere- and Telomerase-Associated Proteins and Their Functions in the Plant Cell

. 2016 ; 7 () : 851. [epub] 20160628

Telomere binding protein TRB1 is associated with promoters of translation machinery genes in vivo

. 2016 Jan ; 90 (1-2) : 189-206. [epub] 20151123

Genetic architecture of natural variation of telomere length in Arabidopsis thaliana

. 2015 Feb ; 199 (2) : 625-35. [epub] 20141208

Using Centromere Mediated Genome Elimination to Elucidate the Functional Redundancy of Candidate Telomere Binding Proteins in Arabidopsis thaliana

. 2015 ; 6 () : 349. [epub] 20160105

Compromised telomere maintenance in hypomethylated Arabidopsis thaliana plants

. 2014 Mar ; 42 (5) : 2919-31. [epub] 20131210

Telomere repeat binding proteins are functional components of Arabidopsis telomeres and interact with telomerase

. 2014 Mar ; 77 (5) : 770-81. [epub] 20140218

Telomeres in evolution and evolution of telomeres

. 2005 ; 13 (5) : 469-79.

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...