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Items by Bolhuis, Albert

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Number of items: 34.

Krause-Heuer, A.M., Leverett, P., Aldrich-Wright, J.R. and Bolhuis, A., 2012. Copper(ii) and palladium(ii) complexes with cytotoxic and antibacterial activity. Australian Journal of Chemistry, 65 (7), pp. 860-873.

Howson, S. E., Bolhuis, A., Brabec, V., Clarkson, G. J., Malina, J., Rodger, A. and Scott, P., 2012. Optically pure, water-stable metallo-helical ‘flexicate’ assemblies with antibiotic activity. Nature Chemistry, 4 (1), pp. 31-36.

Akkaya, Ö., İşsever Öztürk, S., Bolhuis, A. and Gümüşel, F., 2012. Mutations in the translation initiation region of the pac gene resulting in increased levels of activity of penicillin G acylase. World Journal of Microbiology and Biotechnology, 28 (5), pp. 2159-2164.

Boleij, A., Muytjens, C. M. J., Bukhari, S. I., Cayet, N., Glaser, P., Hermans, P. W. M., Swinkels, D. W., Bolhuis, A. and Tjalsma, H., 2011. Novel clues on the specific association of Streptococcus gallolyticus subsp gallolyticus with colorectal cancer. Journal of Infectious Diseases, 203 (8), pp. 1101-1109.

Bolhuis, A., Hand, L., Marshall, J. E., Richards, A. D., Rodger, A. and Aldrich-Wright, J., 2011. Antimicrobial activity of ruthenium-based intercalators. European Journal of Pharmaceutical Sciences, 42 (4), pp. 313-317.

Bolhuis, A. and Richards, A. D., 2011. Development of metal complexes as potential antimicrobials. In: Aldrich-Wright, J., ed. Metallointercalators: Synthesis and Techniques to Probe Their Interactions with Biomolecules. New York: Springer, pp. 373-388.

Fasehee, H., Westers, H., Bolhuis, A., Antelmann, H., Hecker, M., Quax, W. J., Mirlohi, A. F., van Dijl, J. M. and Ahmadian, G., 2011. Functional analysis of the sortase YhcS in Bacillus subtilis. Proteomics, 11 (19), pp. 3905-3913.

Kwan, D. and Bolhuis, A., 2010. Analysis of the twin-arginine motif of a haloarchaeal Tat substrate. FEMS Microbiology Letters, 308 (2), pp. 138-143.

Richards, A. D., Rodger, A., Hannon, M. J. and Bolhuis, A., 2009. Antimicrobial activity of an iron triple helicate. International Journal of Antimicrobial Agents, 33 (5), pp. 469-472.

Meredith, K., Bolhuis, A. and O’Neill, M. A. A., 2009. Enterococcal surface protein Esp affects antibiotic sensitivity in Enterococcus faecium. International Journal of Antimicrobial Agents, 34 (4), pp. 392-393.

Kwan, D. C., Thomas, J. R. and Bolhuis, A., 2008. Bioenergetic requirements of a Tat-dependent substrate in the halophilic archaeon Haloarcula hispanica. FEBS Journal, 275 (24), pp. 6159-6167.

Bolhuis, A., Kwan, D. and Thomas, J. R., 2008. Halophilic adaptation of proteins. In: Siddiqui, K. S. and Thomas, T., eds. Protein Adaptation in Extremophiles. New York: Nova Science, pp. 71-104.

Thomas, J. R. and Bolhuis, A., 2006. The tatC gene cluster is essential for viability in halophilic archaea. FEMS Microbiology Letters, 256 (1), pp. 44-49.

Hutcheon, G. W., Vasisht, N. and Bolhuis, A., 2005. Characterisation of a highly stable α-amylase from the halophilic archaeon Haloarcula hispanica. Extremophiles, 9, pp. 487-495.

Mangels, D., Mathers, J., Bolhuis, A. and Robinson, C., 2005. The core TatABC complex of the twin-arginine translocase in Escherichia coli : TatC drives assembly whereas TatA is essential for stability. Journal of Molecular Biology, 345, pp. 415-423.

Oates, J., Barrett, C., Barnett, J., Byrne, K., Bolhuis, A. and Robinson, C., 2005. The twin-arginine translocation apparatus incorporates a distinct form of TatABC complex, spectrum of modular TatA complexes and minor TatAB complex. Journal of Molecular Biology, 346 (1), pp. 295-305.

Bolhuis, A., 2004. Early transport: Protein secretion pathways in Archaea. The Biochemist, 26 (3), pp. 16-18.

Robinson, C. and Bolhuis, A., 2004. Tat-dependent protein targeting in prokaryotes and chloroplasts. Biochimica et Biophysica Acta, 1694, pp. 135-147.

Bolhuis, A., 2004. The archaeal Sec-dependent protein translocation pathway. Philosophical Transactions of the Royal Society B, 359, pp. 919-927.

Barrett, C. M. L., Ray, N., Thomas, J. D., Robinson, C. and Bolhuis, A., 2003. Quantitative export of a reporter protein, GFP, by the twin-arginine translocation pathway in Escherichia coli. Biochemical and Biophysical Research Communications, 304 (2), pp. 279-284.

Hutcheon, G. W. and Bolhuis, A., 2003. The archael twin-arginine translocation pathway. Biochemical Society Transactions, 31 (3), pp. 686-689.

Yi, L., Jiang, F., Chen, M., Cain, B., Bolhuis, A. and Dalbey, R., 2003. YidC is strictly required for membrane insertion of subunits a and c of the F 1 F 0 ATP synthase and SecE of the SecYEG translocase. Biochemistry, 42, pp. 10537-10544.

Bolhuis, A., 2002. Protein transport in the halophilic archaeon Halobacterium sp NRC 1: a major role for the Twin Arginine translocation pathway? Microbiology, 148 (11), pp. 3335-3345.

Meima, R., Eschevins, C., Fillinger, S., Bolhuis, A., Hamoen, L. W., Dorenbos, R., Quax, W. J., van Dijl, J. M., Provvedi, R., Chen, I., Dubnau, D. and Bron, S., 2002. The bdbDC operon of bacillus subtilis encodes thiol-disulfide oxidoreductases required for competence development. Journal of Biological Chemistry, 277 (9), pp. 6994-7001.

Dorenbos, R., Stein, T., Kabel, J., Bruand, C., Bolhuis, A., Bron, S., Quax, W. J. and van Dijl, J. M., 2002. Thiol-disulfide oxidoreductases are essential for the production of the lantibiotic sublancin 168. Journal of Biological Chemistry, 277 (19), pp. 16682-16888.

Hyyryläinen, H. L., Bolhuis, A., Darmon, E., Muukkonen, L., Koski, P., Vitikainen, M., Sarvas, M., Prágai, Z., Bron, S., van Dijl, J. M. and Kontinen, V. P., 2001. A novel two-component regulatory system in Bacillus subtilis for the survival of severe secretion stress. Molecular Microbiology, 41 (5), pp. 1159-1172.

Robinson, C. and Bolhuis, A., 2001. Protein targeting by the twin-arginine translocation pathway. Nature Reviews Molecular Cell Biology, 2, pp. 350-356.

van Dijl, J. M., Bolhuis, A., Tjalsma, H., Jongbloed, J. D. H., de Jong, A. and Bron, S., 2001. Protein transport pathways in Bacillus subtilis: a genome-based road map. In: Sonenshein, A. L., Hoch, J. A. and Losick, R., eds. Bacillus subtilis and its closest relatives: from genes to cells. Washington, DC: ASM Press, pp. 337-355.

Bolhuis, A., Mathers, J. E., Thomas, J. D., Barrett, C. L. and Robinson, C., 2001. TatB and TatC form a functional and structural unit of the twin arginine translocase from Escherichia coli. Journal of Biological Chemistry, 276 (23), pp. 20213-20219.

Bolhuis, A., Koetje, E., Dubois, J. Y., Vehmaanpera, J., Venema, G., Bron, S. and van Dijl, J. M., 2000. Did the mitochondrial processing peptidase evolve from a eubacterial regulator of gene expression? Molecular Biology and Evolution, 17 (1), pp. 198-201.

Jongbloed, J. D. H., Bolhuis, A., Braun, P. G., Darmon, E., Dorenbos, R., Tjalsma, H., Westers, H., Zanen, G. E., Quax, W. J., Bron, S. and van Dijl, J. M., 2000. Functional analysis of the secretome of Bacillus subtilis. In: Biotechnology: Practice in Non-Food, 2000-10-22 - 2000-10-25, Muenster.

Woolhead, C., Bolhuis, A. and Robinson, C., 2000. Novel mechanisms for the targeting of proteins into and across chloroplast membranes. Biochemical Society Transactions, 28, pp. 491-494.

Tjalsma, H., Bolhuis, A., Jongbloed, J. D. H., Bron, S. and van Dijl, J. M., 2000. Signal peptide-dependent protein transport in Bacillus subtilis: a genome-based survey of the secretome. Microbiology and Molecular Biology Reviews, 64 (3), pp. 515-547.

Bolhuis, A., Bogsch, E. G. and Robinson, C., 2000. Subunit interactions in the twin-arginine translocase complex of Escherichia coli. FEBS Letters, 472 (1), pp. 88-92.

This list was generated on Wed Jun 19 00:05:35 2013 IST.