Biology Reference
In-Depth Information
Marchler-Bauer, A., Anderson, J. B., Cherukuri, P. F., DeWeese-Scott, C., Geer, L. Y.,
Gwadz, M., et al. (2005). CDD: A conserved domain database for protein classification.
Nucleic Acids Research , 33 , D192-D196.
Mastronicola, D., Testa, F., Forte, E., Bordi, E., Pucillo, L. P., Sarti, P., et al. (2010).
Flavohemoglobin and nitric oxide detoxification in the human protozoan parasite
Giardia intestinalis . Biochemical and Biophysical Research Communications , 399 , 654-658.
Miller, M. A., Pfeiffer, W., & Schwartz, T. (2010). Creating the CIPRES Science Gateway
for inference of large phylogenetic trees. In Proceedings of the gateway computing environ-
ments workshop (GCE), 14 November, New Orleans, LA (pp. 1-8).
Mills, C. E., Sedelnikova, S., Soballe, B., Hughes, M. N., & Poole, R. K. (2001). Escherichia
coli flavohaemoglobin (Hmp) with equistoichiometric FAD and haem contents has a low
affinity for dioxygen in the absence or presence of nitric oxide. The Biochemical Journal ,
353 , 207-213.
Moon-vander Staay, S.Y.,DeWachter,R.,&Vaulot,D. (2001).Oceanic18S rDNAsequences
from picoplankton reveal unsuspected eukaryotic diversity. Nature , 409 , 607-610.
Mur, L. A. J., Carver, T. L. W., & Prats, E. (2006). NOway to live; the various roles of nitric
oxide in plant-pathogen interactions. Journal of Experimental Botany , 57 , 489-505.
Mur, L. A., Mandon, J., Cristescu, S. M., Harren, F. J., & Prats, E. (2011). Methods of nitric
oxide detection in plants: A commentary. Plant Science , 181 , 509-519.
Murray, J. W., Delumeau, O., & Lewis, R. J. (2005). Structure of a nonheme globin in envi-
ronmental stress signaling. Proceedings of the National Academy of Sciences of the United States
of America , 102 , 17320-17325.
Nakai, K., & Horton, P. (1999). PSORT: A program for detecting sorting signals in proteins
and predicting their subcellular localization. Trends in Biochemical Sciences , 24 , 34-36.
Nichols, S. A., Roberts, B. W., Richter, D. J., Fairclough, S. R., & King, N. (2012). Origin
of metazoan cadherin diversity and the antiquity of the classical cadherin/beta-catenin
complex. Proceedings of the National Academy of Sciences of the United States of America ,
109 , 13046-13051.
Ohm, R. A., Feau, N., Henrissat, B., Schoch, C. L., Horwitz, B. A., Barry, K. W., et al.
(2012). Diverse lifestyles and strategies of plant pathogenesis encoded in the genomes
of eighteen Dothideomycetes fungi. PLoS Pathogens , 8 , e1003037.
Orozco-Cardenas, M. L., & Ryan, C. A. (2002). Nitric oxide negatively modulates wound
signaling in tomato plants. Plant Physiology and Biochemistry , 130 , 487-493.
Oshino, R., Asakura, T., Takio, K., Oshino, N., Chance, B., & Hagihara, B. (1973). Puri-
fication and molecular properties of yeast hemoglobin. European Journal of Biochemistry ,
39 , 581-590.
Oshino, R., Asakura, T., Tamura, M., Oshino, N., &Chance, B. (1972). Yeast hemoglobin-
reductase complex. Biochemical and Biophysical Research Communications , 46 , 1055-1060.
Oshino, R., Oshino, N., & Chance, B. (1971). The oxygen equilibrium of yeast hemoglo-
bin. FEBS Letters , 19 , 96-100.
Oshino, R., Oshino, N., & Chance, B. (1973). Studies on yeast hemoglobin. The properties
of yeast hemoglobin and its physiological function in the cell. European Journal of Biochem-
istry , 35 , 23-33.
Parfrey, L. W., Lahr, D. J., Knoll, A. H., & Katz, L. A. (2011). Estimating the timing of early
eukaryotic diversification with multigene molecular clocks. Proceedings of the National
Academy of Sciences of the United States of America , 108 , 13624-13629.
Paveto, C., Pereira, C., Espinosa, J., Montagna, A. E., Farber, M., Esteva, M., et al. (1995).
The nitric oxide transduction pathway in Trypanosoma cruzi . The Journal of Biological
Chemistry , 270 , 16576-16579.
Pawlowski, J., Christen, R., Lecroq, B., Bachar, D., Shahbazkia, H. R., Amaral-Zettler, L.,
et al. (2011). Eukaryotic richness in the abyss: Insights from pyrotag sequencing. PLoS
One , 6 , e18169.
Search WWH ::




Custom Search