A1 Vertaisarvioitu alkuperäisartikkeli tieteellisessä lehdessä

Isobutene production in Synechocystis sp. PCC 6803 by introducing α-ketoisocaproate dioxygenase from Rattus norvegicus




TekijätMustila Henna, Kugler Amit, Stensjö Karin

KustantajaElsevier BV

Julkaisuvuosi2021

JournalMetabolic Engineering Communications

Tietokannassa oleva lehden nimiMetabolic engineering communications

Artikkelin numeroe00163

Vuosikerta12

eISSN2214-0301

DOIhttps://doi.org/10.1016/j.mec.2021.e00163

Verkko-osoitehttp://europepmc.org/abstract/med/33552898

Rinnakkaistallenteen osoitehttps://research.utu.fi/converis/portal/Publication/53049061


Tiivistelmä

Cyanobacteria can be utilized as a platform for direct phototrophic conversion of CO2 to produce several types of carbon-neutral biofuels. One promising compound to be produced photobiologically in cyanobacteria is isobutene. As a volatile compound, isobutene will quickly escape the cells without building up to toxic levels in growth medium or get caught in the membranes. Unlike liquid biofuels, gaseous isobutene may be collected from the headspace and thus avoid the costly extraction of a chemical from culture medium or from cells. Here we investigate a putative synthetic pathway for isobutene production suitable for a photoautotrophic host. First, we expressed α-ketoisocaproate dioxygenase from Rattus norvegicus (RnKICD) in Escherichia coli. We discovered isobutene formation with the purified RnKICD with the rate of 104.6 ​± ​9 ​ng (mg protein)-1 min-1 using α-ketoisocaproate as a substrate. We further demonstrate isobutene production in the cyanobacterium Synechocystis sp. PCC 6803 by introducing the RnKICD enzyme. Synechocystis strain heterologously expressing the RnKICD produced 91 ​ng ​l−1 OD750−1 ​h−1. Thus, we demonstrate a novel sustainable platform for cyanobacterial production of an important building block chemical, isobutene. These results indicate that RnKICD can be used to further optimize the synthetic isobutene pathway by protein and metabolic engineering efforts.


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