The temperature-dependent change in methylation of the Antirrhinum transposon Tam3 is controlled by the activity of its transposase.
نویسندگان
چکیده
The Antirrhinum majus transposon Tam3 undergoes low temperature-dependent transposition (LTDT). Growth at 15 degrees C permits transposition, whereas growth at 25 degrees C strongly suppresses it. The degree of Tam3 DNA methylation is altered somatically and positively correlated with growth temperature, an exceptional epigenetic system in plants. Using a Tam3-inactive line, we show that methylation change depends on Tam3 activity. Random binding site selection analysis and electrophoretic mobility shift assays revealed that the Tam3 transposase (TPase) binds to the major repeat in the subterminal regions of Tam3, the site showing the biggest temperature-dependent change in methylation state. Methylcytosines in the motif impair the binding ability of the TPase. Proteins in a nuclear extract from plants grown at 15 degrees C but not 25 degrees C bind to this motif in Tam3. The decrease in Tam3 DNA methylation at low temperature also requires cell division. Thus, TPase binding to Tam3 occurs only during growth at low temperature and immediately after DNA replication, resulting in a Tam3-specific decrease in methylation of transposon DNA. Consequently, the Tam3 methylation level in LTDT is regulated by Tam3 activity, which is dependent on the ability of its TPase to bind DNA and affected by growth temperature. Thus, the methylation/demethylation of Tam3 is the consequence, not the cause, of LTDT.
منابع مشابه
DNA methylation is not necessary for the inactivation of the Tam3 transposon at non-permissive temperature in Antirrhinum.
It has been proposed that DNA methylation plays an important role in the inactivation of transposons. This view stems from a comparison of the degree of methylation of transposons in the active and inactive state. However, direct evidence for the degree of methylation required for the suppression of transposition has not been reported. Transposon Tam3 in Antirrhinum majus undergoes somatic reve...
متن کاملTemperature shift coordinately changes the activity and the methylation state of transposon Tam3 in Antirrhinum majus.
The transposition frequency of Tam3 in Antirrhinum majus, unlike that of most other cut-and-paste-type transposons, is tightly controlled by temperature: Tam3 transposes rarely at 25 degrees C, but much more frequently at 15 degrees C. Here, we studied the mechanism of the low-temperature-dependent transposition (LTDT) of Tam3. Our results strongly suggest that LTDT is not likely to be due to e...
متن کاملStable transcription activities dependent on an orientation of Tam3 transposon insertions into Antirrhinum and yeast promoters occur only within chromatin.
Transposon insertions occasionally occur in the promoter regions of plant genes, many of which are still capable of being transcribed. However, it remains unclear how transcription of such promoters is able to occur. Insertion of the Tam3 transposon into various genes of Antirrhinum majus can confer leaky phenotypes without its excision. These genes, named Tam3-permissible alleles, often contai...
متن کاملDNA methylation is not necessary for the inactivation of the Tam 3
Title DNA methylation is not necessary for the inactivation of the Tam3 transposon at non-permissive temperature in Antirrhinum Author(s) Hashida, Shin-nosuke; Kishima, Yuji; Mikami, Tetsuo Citation Journal of Plant Physiology, 162(11): 1292-1296 Issue Date 2005-11-15 DOI Doc URL http://hdl.handle.net/2115/8374 Right Type article (author version) Additional Information File Information Compiled...
متن کاملResistance to gap repair of the transposon Tam3 in Antirrhinum majus: a role of the end regions.
The extremely homogeneous organization of the transposon family Tam3 in Antirrhinum majus is in sharp contrast to the heterogeneity of the copies constituting many other transposon families. To address the issue of the Tam3 structural uniformity, we examined two possibilities: (1) recent invasion of Tam3 and (2) failure of gap repair, which is involved in conversion from autonomous forms to def...
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ورودعنوان ژورنال:
- The Plant cell
دوره 18 1 شماره
صفحات -
تاریخ انتشار 2006