2.6.1.83: LL-diaminopimelate aminotransferase
This is an abbreviated version!
For detailed information about LL-diaminopimelate aminotransferase, go to the full flat file.
Word Map on EC 2.6.1.83
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2.6.1.83
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chlamydia
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tetrahydrodipicolinate
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l-lysine
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meso-diaminopimelate
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peptidoglycan
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trachomatis
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verrucomicrobium
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spinosum
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herbicide
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pyridoxal-5'-phosphate
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auxotrophic
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cyanobacteria
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plp-dependent
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aminotransferases
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l-glutamate
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reinhardtii
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pyridoxal
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transamination
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chlamydomonas
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v-shaped
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hydrazide
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algaecide
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thermautotrophicus
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meso-dap
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methanothermobacter
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methanococcales
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methanogens
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rhodanine
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drug development
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leptospira
- 2.6.1.83
- chlamydia
- tetrahydrodipicolinate
- l-lysine
- meso-diaminopimelate
- peptidoglycan
- trachomatis
-
verrucomicrobium
- spinosum
-
herbicide
- pyridoxal-5'-phosphate
-
auxotrophic
- cyanobacteria
-
plp-dependent
- aminotransferases
- l-glutamate
- reinhardtii
- pyridoxal
-
transamination
-
chlamydomonas
-
v-shaped
- hydrazide
-
algaecide
- thermautotrophicus
-
meso-dap
-
methanothermobacter
- methanococcales
-
methanogens
- rhodanine
- drug development
- leptospira
Reaction
Synonyms
Ald1, aq_273, AtDAP-AT, Ava_1277, Ava_2354, BF2666, CT390, CtDAP-AT, Cthe_0816, DAP, DapI, DapL, Dhaf_1761, diaminopimelate aminotransferase, glr4108, GSU0162, L,L-diaminopimelate aminotransferase, LIC12841, LL-DAP aminotransferase, LL-DAP-AT, LL-DAPAT, LL-diaminopimelate aminotransferase, MA1712, Moth_0889, Msp_0924, MTH52, pc0685, Sfum_0054, sll0480, VsDapL
ECTree
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Engineering
Engineering on EC 2.6.1.83 - LL-diaminopimelate aminotransferase
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additional information
the dapat (aberrant growth death 2 (agd-2)) mutation of Arabidopsis thaliana leads to metabolic shifts and growth inhibition. Transcriptional and two-dimensional (isoelectric focusing/SDS-PAGE) proteome analyses reveal alterations in the abundance of several transcripts and proteins associated with photosynthesis and photorespiration coupled with a high glycine/serine ratio and increased levels of stress-responsive amino acids. Transcriptome changes induced by the DAPAT mutation, quantitative RT-PCR expression analysis, detailed overview. The leaf proteome is affected by the DAPAT mutation
additional information
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the dapat (aberrant growth death 2 (agd-2)) mutation of Arabidopsis thaliana leads to metabolic shifts and growth inhibition. Transcriptional and two-dimensional (isoelectric focusing/SDS-PAGE) proteome analyses reveal alterations in the abundance of several transcripts and proteins associated with photosynthesis and photorespiration coupled with a high glycine/serine ratio and increased levels of stress-responsive amino acids. Transcriptome changes induced by the DAPAT mutation, quantitative RT-PCR expression analysis, detailed overview. The leaf proteome is affected by the DAPAT mutation
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