1 |
Directed evolution to produce sludge communities with improved oxygen uptake abilities Kunkel SA, Pagilla KR, Stark BC Applied Microbiology and Biotechnology, 99(24), 10725, 2015 |
2 |
Analysis of novel hemoglobins during microaerobic growth of HMP-negative Escherichia coli Kallio PT, Heidrich J, Koskenkorva T, Bollinger CJT, Farres J, Frey AD Enzyme and Microbial Technology, 40(2), 329, 2007 |
3 |
Mutational study of the bacterial hemoglobin distal heme pocket Verma S, Patel S, Kaur R, Chung YT, Dikshit KL, Stark BC, Webster DA Biochemical and Biophysical Research Communications, 326(2), 290, 2005 |
4 |
Continuous wave and pulse EPR and ENDOR study of oxygenated cobalt(II) heme model systems Van Doorslaer S, Schweiger A Journal of Physical Chemistry B, 104(13), 2919, 2000 |
5 |
Oxygen-avid hemoglobin of Ascaris Goldberg DE Chemical Reviews, 99(12), 3371, 1999 |
6 |
The effect of axial ligand plane orientation on the isotropic shifts of the dichelated protohemin cyanide complexes of Traylor and Berzinis Minniear AB, Shokhireva TK, Walker FA Inorganic Chemistry, 38(25), 5856, 1999 |
7 |
A determination of the reduction potentials for diferric and C-and N-lobe monoferric transferrins at endosomal pH (5.8) Kraiter DC, Zak O, Aisen P, Crumbliss AL Inorganic Chemistry, 37(5), 964, 1998 |
8 |
Binding and electron transfer between cytochrome b(5) and the hemoglobin alpha- and beta-subunits through the use of [Zn, Fe] hybrids Naito NR, Huang H, Sturgess AW, Nocek JM, Hoffman BM Journal of the American Chemical Society, 120(44), 11256, 1998 |
9 |
Cyclic Electron-Transfer Within the (Zn-Myoglobin, Cytochrome B(5)) Complex Nocek JM, Sishta BP, Cameron JC, Mauk AG, Hoffmann BM Journal of the American Chemical Society, 119(9), 2146, 1997 |
10 |
Reductive Quenching of the Triplet-State of Zinc Cytochrome-C by the Hexacyanoferrate(II) Anion and by Conjugate Bases of Ethylenediaminetetraacetic Acid Shen CY, Kostic NM Inorganic Chemistry, 35(10), 2780, 1996 |