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JPEG Image - 2.7 MB -
MD5: e906d46ddedd1a389389d8e15f21df22
Raw result file. |
JPEG Image - 3.8 MB -
MD5: e56fd54b212603f9583fa425c9fb3610
Raw result file. |
JPEG Image - 2.1 MB -
MD5: 21774f302aa5b5cb5fdcf0cef3b69c6e
Raw result file. |
Apr 16, 2025 -
Raw data for: The knowledge driven DBTL cycle provides mechanistic insights while optimising dopamine production in Escherichia coli
MS Excel Spreadsheet - 321.3 KB -
MD5: 205fdf5c2a4fd032285dd9388bdaa13e
RoboLector Data for engineered hosts strains for tyrosine production. Also HPLC raw data and evaluation is added. |
Apr 16, 2025 -
Raw data for: The knowledge driven DBTL cycle provides mechanistic insights while optimising dopamine production in Escherichia coli
MS Excel Spreadsheet - 76.5 KB -
MD5: a2c1a159d554a8979d1108565b116c2a
Protokoll and results of the in vitro crude cell lysate investigation. |
Apr 16, 2025 -
Raw data for: The knowledge driven DBTL cycle provides mechanistic insights while optimising dopamine production in Escherichia coli
MS Excel Spreadsheet - 45.6 KB -
MD5: 858112b8858e128cf31a79391885abe2
Extracted RBS sequences with related TIR and further design of the high throughput RBS engineering. |
Apr 16, 2025 -
Raw data for: The knowledge driven DBTL cycle provides mechanistic insights while optimising dopamine production in Escherichia coli
MS Excel Spreadsheet - 2.4 MB -
MD5: ddae7084aeaa29a081049947d7c1c8a9
Fully characterisation and documentation of the strain construction and testing. |
Apr 16, 2025 -
Raw data for: The knowledge driven DBTL cycle provides mechanistic insights while optimising dopamine production in Escherichia coli
MS Excel Spreadsheet - 71.5 KB -
MD5: 04403fd22673c8bbc71325b97d08476c
Evaulation of the GC content. |
Apr 16, 2025 -
Raw data for: The knowledge driven DBTL cycle provides mechanistic insights while optimising dopamine production in Escherichia coli
MS Excel Spreadsheet - 1.4 MB -
MD5: c3236f37ece405323d4477874799aacd
Raw data and evaluation of the proteomics data. |
Dec 19, 2024 -
Data for: Mechanistic Modeling of In Vivo Translation in Escherichia coli Reliably Identifies Well-Adapted and Optimized RNA Sequences
Plain Text - 560 B -
MD5: bbd8064eeb4281aeef2b5aee767e0953
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