Journal Article PreJuSER-57377

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Expression of the halobacterial transducer protein HtrII from Natronomonas pharaonis in Escherichia coli

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2007
Elsevier Amsterdam [u.a.]

FEBS letters 581, 1487 - 1494 () [10.1016/j.febslet.2007.03.005]

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Abstract: Archaeal phototaxis is mediated by sensory rhodopsins which form complexes with their cognate transducers. Whereas the receptors sensory rhodopsin I and sensory rhodopsin II (SRII) have been expressed in Escherichia coli (E. coli) only shortened fragments of HtrII from Natronomonas pharaonis (NpHtrII) are available. Here we describe the heterologous expression of full length NpHtrII which was achieved in yields of up to 0.9 mg per litre cell culture. Gel filtration analysis reveals the tendency of the transducer to form dimers and higher-order oligomers which was also observed when complexed to NpSRII. A circular dichroism (CD) spectrum of NpHtrII is comparable to those obtained for the E. coli chemoreceptors indicating a similar folding with predominantly alpha-helical structure. NpHtrII dissociates from the NpSRII/HtrII complex with an apparent K(D) of about 0.6 microM. Photocycle kinetics of the complex is comparable to that obtained for NpSRII in complex with a truncated transducer with slight differences in the M-decay. The data indicate that the heterologously expressed NpHtrII adopt a native like structure, providing the means for elucidating transmembrane signal transduction and activation of microbial signalling cascades.

Keyword(s): Archaeal Proteins: biosynthesis (MeSH) ; Archaeal Proteins: chemistry (MeSH) ; Archaeal Proteins: isolation & purification (MeSH) ; Chromatography, Gel (MeSH) ; Circular Dichroism (MeSH) ; Cloning, Molecular (MeSH) ; Dimerization (MeSH) ; Escherichia coli: genetics (MeSH) ; Lasers (MeSH) ; Photolysis (MeSH) ; Protein Structure, Secondary (MeSH) ; Recombinant Proteins: biosynthesis (MeSH) ; Recombinant Proteins: chemistry (MeSH) ; Recombinant Proteins: isolation & purification (MeSH) ; Archaeal Proteins ; HtrII protein, Natronobacterium pharaonis ; Recombinant Proteins ; J ; sensory rhodopsin (auto) ; signal transduction (auto) ; phototaxis (auto) ; chemotaxis (auto)


Note: Record converted from VDB: 12.11.2012

Contributing Institute(s):
  1. Molekulare Biophysik (INB-2)
Research Program(s):
  1. Funktion und Dysfunktion des Nervensystems (P33)

Appears in the scientific report 2007
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ICS > ICS-6
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 Record created 2012-11-13, last modified 2020-04-02



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