dc.contributor.advisor |
Lahaye, Thomas (Prof. Dr.) |
|
dc.contributor.author |
Wolf, Christina |
|
dc.date.accessioned |
2016-04-19T08:06:51Z |
|
dc.date.available |
2016-04-19T08:06:51Z |
|
dc.date.issued |
2016-04 |
|
dc.identifier.other |
468254897 |
de_DE |
dc.identifier.uri |
http://hdl.handle.net/10900/69328 |
|
dc.identifier.uri |
http://nbn-resolving.de/urn:nbn:de:bsz:21-dspace-693283 |
de_DE |
dc.identifier.uri |
http://dx.doi.org/10.15496/publikation-10743 |
|
dc.description.abstract |
Members of the plant pathogenic bacterial genus Xanthomonas inject TALEs
(Transcription Activator Like Effector) by a type III secretion system into host plant
cells. Inside the plant cells TALEs bind and activate host genes thereby promoting
bacterial disease. The DNA binding domain of TALEs is modular and consists of
imperfect 33-35 long tandem-arranged amino acid repeats. Each repeat binds to a
single nucleotide with position 13, determining base specificity. The base specificity
of distinct residues in position 13 is known as the TALE code. This TALE code
provides the possibility to create custom TALEs with desired DNA target specificity or
to predict DNA targets of native TALEs.
This work characterizes two new members of the TALEs, called TALE-likes: (1) Bats,
which derive from the bacterium Burkholderia rhizoxinica and (2) MOrTLs, whose
DNA sequences were found in a marine metagenomics database. We demonstrate
that DNA binding preferences of these two classes of TALE-likes can be predicted
with the TALE-code. Yet, some of the repeats have a lower base specificity than
TALEs. Additionally the TALE-likes have a different affinity to DNA and higher protein
stability compared to TALEs. Analysis of protein chimeras showed that repeats of
TALEs and TALE-like proteins are compatible and can be used to create protein
chimeras. The TALE-likes have different DNA affinities and protein stabilities as
compared to the TALEs. They can be adapted to create new proteins and protein chimeras with new useful properties. |
en |
dc.language.iso |
en |
de_DE |
dc.publisher |
Universität Tübingen |
de_DE |
dc.rights |
ubt-podok |
de_DE |
dc.rights.uri |
http://tobias-lib.uni-tuebingen.de/doku/lic_mit_pod.php?la=de |
de_DE |
dc.rights.uri |
http://tobias-lib.uni-tuebingen.de/doku/lic_mit_pod.php?la=en |
en |
dc.subject.classification |
Biologie , Biochemie , Informatik , Bioinformatik , Systembiologie , Biowissenschaften , Naturwissenschaften , Naturwissenschaftler , Wissenschaftler , Wissenschaftlerin , Naturwissenschaftlerin , Molekularbiologie , Genetik , Proteine , Genprodukt , Biotechnologie , Biotechnik , Angewandte Biologie |
de_DE |
dc.subject.ddc |
000 |
de_DE |
dc.subject.ddc |
500 |
de_DE |
dc.subject.ddc |
540 |
de_DE |
dc.subject.ddc |
570 |
de_DE |
dc.subject.ddc |
580 |
de_DE |
dc.subject.ddc |
590 |
de_DE |
dc.subject.ddc |
600 |
de_DE |
dc.subject.other |
TALE |
de_DE |
dc.subject.other |
Xanthomonas |
de_DE |
dc.subject.other |
TAL Effektor |
de_DE |
dc.title |
Biochemical characterization of modular DNA-binding domains of novel TALE-like proteins |
en |
dc.type |
PhDThesis |
de_DE |
dcterms.dateAccepted |
2016-03-03 |
|
utue.publikation.fachbereich |
Biologie |
de_DE |
utue.publikation.fakultaet |
7 Mathematisch-Naturwissenschaftliche Fakultät |
de_DE |
utue.publikation.fakultaet |
7 Mathematisch-Naturwissenschaftliche Fakultät |
de_DE |