Biology Reference
In-Depth Information
Siddiqui, K. S., & Cavicchioli, R. (2006). Cold-adapted enzymes. Annual Review of Biochem-
istry , 75 , 403-433.
Smagghe, B. J., Trent, J. T., III., & Hargrove, M. S. (2008). NO dioxygenase activity in
hemoglobins is ubiquitous in vitro , but limited by reduction in vivo . PLoS One , 3 , e2039.
Smetacek, V., & Nicol, S. (2005). Polar ocean ecosystems in a changing world. Nature , 437 ,
362-368.
Smith, H. K., Shepherd, M., Monk, C., Green, J., & Poole, R. K. (2011). The
NO-responsive hemoglobins of Campylobacter jejuni : Concerted responses of two globins
to NO and evidence in vitro for globin regulation by the transcription factor NssR. Nitric
Oxide , 25 , 234-241.
Somero, G. N. (2010). The physiology of climate change: How potentials for acclimatization
and genetic adaptation will determine “winners” and “losers”. The Journal of Experimental
Biology , 213 , 912-920.
Sowa, A. W., Guy, P. A., Sowa, S., & Hill, R. D. (1999). Nonsymbiotic haemoglobins in
plants. Acta Biochimica Polonica , 46 , 431-445.
Spiro, S. (2007). Regulators of bacterial responses to nitric oxide. FEMS Microbiology Reviews ,
31 , 193-211.
Springer, B. A., Sligar, S. G., Olson, J. S., & Phillips, G. N., Jr. (1994). Mechanisms of ligand
recognition in myoglobin. Chemical Reviews , 94 , 699-714.
Steinberg, D. K., Carlson, C. A., Bates, N. R., Johnson, R. J., Michaels, A. F., &Knap, A. H.
(2001). Overview of the U.S. JGOFS Bermuda Atlantic Time-series Study (BATS):
A decade-scale look at ocean biology and biogeochemistry. Deep Sea Research II , 48 ,
1405-1447.
Stevanin, T. M., Ioannidis, N., Mills, C. E., Kim, S. O., Hughes, M. N., & Poole, R. K.
(2000). Flavohemoglobin Hmp affords inducible protection for Escherichia coli respira-
tion, catalyzed by cytochromes bo' or bd , from nitric oxide. Journal of Biological Chemistry ,
275 , 35868-35875.
Stevanin, T. M., Poole, R. K., Demoncheaux, E. A. G., & Read, R. C. (2002).
Flavohemoglobin Hmp protects Salmonella enterica serovar Typhimurium from nitric
oxide-related killing by human macrophages. Infection and Immunity , 70 , 4399-4405.
Stevanin, T. A., Read, R. C., & Poole, R. K. (2007). The hmp gene encoding the
NO-inducible flavohaemoglobin in Escherichia coli confers a protective advantage in
resisting killing within macrophages, but not in vitro : Links with swarming motility. Gene ,
398 , 62-68.
Stocker, R., Seymour, J. R., Samadani, A., Hunt, D. E., & Polz, M. F. (2008). Rapid chemo-
tactic response enables marine bacteria to exploit ephemeral microscale nutrient patches.
Proceedings of the National Academy of Sciences of the United States of America , 105 , 4209-4214.
Stratton, L. P., Kelly, R. M., Rowe, J., Shively, J. E., Smith, D. D., Carpenter, J. F., et al.
(2001). Controlling deamidation rates in a model peptide: Effects of temperature, peptide
concentration, and additives. Journal of Pharmaceutical Sciences , 90 , 2141-2148.
Stuehr, D. J., Gross, S. S., Sakuma, I., Levi, R., & Nathan, C. F. (1989). Activated murine
macrophages secrete a metabolite of arginine with the bioactivity of endothelium-
derived relaxing factor and the chemical reactivity of nitric oxide. The Journal of
Experimental Medicine , 169 , 1011-1020.
Sul, W. J., Oliver, T. A., Ducklow, H. W., Amaral-Zettler, L. A., & Sogin, M. L. (2013).
Marine bacteria exhibit a bipolar distribution. Proceedings of the National Academy of Sciences
of the United States of America , 110 , 2342-2347.
Suzuki, Y., Haruki, M., Takano, K., Morikawa, M., & Kanaya, S. (2004). Possible
involvement of an FKBP family member protein from a psychrotrophic bacterium
Shewanella sp. SIB1 in cold-adaptation. European Journal of Biochemistry , 271 , 1372-1381.
Thomson, M. R. A. (2004). Geological and palaeoenvironmental history of the Scotia Sea
region as a basis for biological interpretation. Deep Sea Research Part II , 51 , 1467-1487.
Search WWH ::




Custom Search