The pH and temperature dependence of the activity of the high Km cyclic nucleotide phosphodiesterase of bakers' yeast.
نویسندگان
چکیده
The hydrolysis of adenosine 3':5'-monophosphate by the high Km cyclic nucleotide phosphodiesterase of bakers' yeast was studied over a range of temperature and pH at I = 0.17. The effects of ionic strength and MgCl2 concentration were studied at pH 7.7 and 30 degrees C. Km and Vmax were insensitive to changes in the MgCl2 concentration between 1 and 30 mM, implying that this enzyme (which does not require free divalent metal ions) does not discriminate between free cyclic AMP- and the Mg-cyclic AMP+ complex. Vmax decreased below pH 6.8 because of protonation of a group required in the basic form in the enzyme x substrate complex. On the basis of its pK (5.46 at 30 degrees C) and delta H (23 kJ/mol) this group was tentatively identified as imidazole. Vmax/Km decreased above pH 6.8 because of ionization of a group required in the acid form in the free enzyme, with a pK of 7.88 at 30 degrees C and a delta H of about 13 kJ/mol. Several possibilities exist for the identity of this group, the most likely being a second imidazole, sulfhydryl, or a water molecule bonded to tightly bound zinc. At pH 7.90, log Vmax and log Km both changed linearly with 1/T (between 12 degrees C and 37 degrees C) with enthalpies of 47 and 55 kJ/mol, respectively. Consequently, at low enough cyclic AMP concentration, the rate of reaction at pH 7.90 decreases slightly when the temperature is increased. This is also true at higher pH, but in the physiological pH range (6.4 to 7.5) Vmax/Km and, therefore, the rate of reaction at very low cyclic AMP concentration were nearly independent of temperature. Under physiological conditions, the Km approaches the upper limit of in vivo cyclic AMP concentrations in yeast, and at normal in vivo cyclic AMP concentrations the pH optimum is within or below the physiological range of pH in yeast.
منابع مشابه
THE CALCIUM BINDING SITES OF THE BAKERS' YEAST TRANSKETOLASE
The calcium binding sites of Bakers' Yeast Transketolase (TK) was elucidated by estimating the pKa values of the functional groups that bind to calcium. These pKa's were found to be 6.25 and 7.2 relating to the pKa's of the two immidazol moieties of histidine residues on the enzyme. The rate of the binding of calcium to the enzyme was obtained separately as a function of pH. Maximum values ...
متن کاملEffect of Using Lactobacillus Brevis IBRC-M10790 and Baker’s Yeast on Phytate Degradation of Sourdough and Barbari Bread
The possible use of Lactobacillus brevis IBRC-M10790 with degrading phytase activity was investigated in sourdough and Barbari bread –using 20 and 30% of sourdough in the formulation- in order to enhance the nutritional bioavailability, and the efficiency of the bacteria in decreasing phytate via using in sourdough was compared to yeast. Results showed that L. brevis ...
متن کاملPartial purification and characterization of cresolase and catecholase activity of black mulberrys (Morus nigra)
Polyphenol oxidase from Black mulberrys was extracted and partially purified through (NH4)2SO4 precipitation, dialysis and ion exchange chromatography. P-cresol was the better substrate for cresolase activity with a Km (11.5 mM) and catechol for catecholase activity with Km (6.4 mM) at pH 5. Km for cresolase and catecholase activity of IsoPPOII at pH 6.5 were 12 and 8.5 and for IsoPPOIII at pH ...
متن کاملExperimental Evaluation of Batch and Continuous Production of Baker’s Yeast under Computer Controlled pH
Steady state and dynamic fermentations of baker's yeast in molasses based media were analyzed in a laboratory scale bioreactor. Sugar and biomass balances together with the Monod biokinetics were used to develop the process model. Parameters of the model were obtained using collected experimental data. Model predicted open loop responses to step changes in feed concentration as well as dilu...
متن کاملBiochemical Characterization of Recombinant Thermostable Cohnella sp. A01 β-Glucanase
Background: Typically, non-cellulytic glucanase, including fungi and yeast cell wall hydrolyzing enzymes, are released by some symbiotic fungi and plants during the mycoparasitic fungi attack on plants. These enzymes are known as the defense mechanisms of plants. This study intends to investigate the biochemical properties of β-1,6-glucanase (bg16M) from native thermophilic bacteria, Cohne...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Journal of biological chemistry
دوره 255 19 شماره
صفحات -
تاریخ انتشار 1980