MTD 243-670 Bedienungsanleitung Seite 123

  • Herunterladen
  • Zu meinen Handbüchern hinzufügen
  • Drucken
  • Seite
    / 144
  • Inhaltsverzeichnis
  • LESEZEICHEN
  • Bewertet. / 5. Basierend auf Kundenbewertungen
Seitenansicht 122
6 Literatur
44. Ermler, U., Hagemeier, C. H., Roth, A., Demmer, U., Grabarse, W.,
Warkentin, E., and Vorholt, J. A. (2002) Structure of methylene-
tetrahydromethanopterin dehydrogenase from Methylobacterium
extorquens AM1, Structure 10, 1127-1137.
45. Acharya, P., Goenrich, M., Hagemeier, C. H., Demmer, U., Vorholt, J. A.,
Thauer, R. K., and Ermler, U. (2005) How an enzyme binds the C
1
carrier
tetrahydromethanopterin. Structure of the tetrahydromethanopterin-
dependent formaldehyde-activating enzyme (Fae) from Methylobacterium
extorquens AM1, J Biol Chem 280, 13712-13719.
46. Acharya, P., Warkentin, E., Ermler, U., Thauer, R. K., and Shima, S. (2006)
The structure of formylmethanofuran: tetrahydromethanopterin
formyltransferase in complex with its coenzymes, J Mol Biol 357, 870-879.
47. Bartoschek, S., Buurman, G., Thauer, R. K., Geierstanger, B. H.,
Weyrauch, J. P., Griesinger, C., Nilges, M., Hutter, M. C., and Helms, V.
(2001) Re-face stereospecificity of methylene-tetrahydromethanopterin and
methylene-tetrahydrofolate dehydrogenases is predetermined by intrinsic
properties of the substrate, Chembiochem 2, 530-541.
48. Dimroth, P. (1982) The generation of an electrochemical gradient of sodium
ions upon decarboxylation of oxaloacetate by the membrane-bound and
Na
+
-activated oxaloacetate decarboxylase from Klebsiella aerogenes,
Eur J Biochem 121, 443-449.
49. Hilpert, W., and Dimroth, P. (1983) Purification and characterization of a new
sodium-transport decarboxylase. Methylmalonyl-CoA decarboxylase from
Veillonella alcalescens, Eur J Biochem 132, 579-587.
50. Buckel, W., and Semmler, R. (1983) Purification, characterisation and
reconstitution of glutaconyl-CoA decarboxylase, a biotin-dependent sodium
pump from anaerobic bacteria, Eur J Biochem 136, 427-434.
51. Tokuda, H., and Unemoto, T. (1982) Characterization of the respiration-
dependent Na
+
pump in the marine bacterium Vibrio alginolyticus,
J Biol Chem 257, 10007-10014.
52. Ken-Dror, S., Lanyi, J. K., Schobert, B., Silver, B., and Avi-Dor, Y. (1986) An
NADH:quinone oxidoreductase of the halotolerant bacterium Ba1 is
specifically dependent on sodium ions, Arch Biochem Biophys 244, 766-772.
53. Dimroth, P., and Thomer, A. (1989) A primary respiratory Na
+
pump of an
anaerobic bacterium: the Na
+
-dependent NADH:quinone oxidoreductase of
Klebsiella pneumoniae, Arch Microbiol 151, 439-444.
54. Harms, U., Weiss, D. S., Gärtner, P., Linder, D., and Thauer, R. K. (1995)
The energy conserving N
5
-methyltetrahydromethanopterin:coenzyme M
methyltransferase complex from Methanobacterium thermoautotrophicum is
composed of eight different subunits, Eur J Biochem 228, 640-648.
55. Harms, U., and Thauer, R. K. (1997) Identification of the active site histidine
in the corrinoid protein MtrA of the energy-conserving methyltransferase
complex from Methanobacterium thermoautotrophicum, Eur J Biochem 250,
783-788.
56. Gärtner, P., Ecker, A., Fischer, R., Linder, D., Fuchs, G., and Thauer, R. K.
(1993) Purification and properties of
N
5
-methyltetrahydromethanopterin:coenzyme M methyltransferase from
Methanobacterium thermoautotrophicum, Eur J Biochem 213, 537-545.
57. Gärtner, P., Weiss, D. S., Harms, U., and Thauer, R. K. (1994)
N
5
-Methyltetrahydromethanopterin:coenzyme M methyltransferase from
Methanobacterium thermoautotrophicum. Catalytic mechanism and sodium
ion dependence, Eur J Biochem 226, 465-472.
106
Seitenansicht 122
1 2 ... 118 119 120 121 122 123 124 125 126 127 128 ... 143 144

Kommentare zu diesen Handbüchern

Keine Kommentare