This study aims to purification and characterization of the glucose oxidase enzyme from Penicillium notatum, the enzyme was purified by ammonium sulfate precipitation (60%), dialysis and gel filtration chromatography using sephadex G-200, A trial for the purification of glucose oxidase using gel filtration technique resulted in one type of glucose oxidase with specific activity of (62.382 U/mg) with (7.385 folds) purification. the purified glucose oxidase had a maximum activity at pH = 5.5, 45 °C, glucose oxidase was stable with pH values ranging between (5 – 6) and the enzyme was maintained the activity when it incubated into (25 -35) °C for 15 minutes, analyses of the glucose oxidase for molecular weight was carried out by PAGE and SDS-PAGE electrophoresis, which revealed 78 KDa, also molecular weight of the glucose oxidase was achieved by gel filtration technique and was found 87 KDa this means that enzyme consisting of only one subunit, the Km and Vmax value of glucoamylase (B) were (19.6 mM, 7.5 mM/min ) respectively using different concentration of glucose.
Samples of 100 random healthy unrelated Iraqi male persons from the Arab ethnic group of Iraqi population were collected for mtDNA coding region sequencing by using the Sanger technique and to establish the degree of variation characteristic of a fragment. Portion of coding region encompassing positions 11,719-12,184 was amplified in accordance with the Anderson reference sequence. PCR products were purified by EZ-10 spin column then sequenced and detected by using the ABI 3130xL DNA Analyzer. This is to intend the detection of polymorphisms of mtDNA. Four new polymorphic positions 11,741, 11,756, 11,878, and 12,133 are described which may be suitable in the future to be the sources for human identification purpose in Iraq. The obtained data can be used to identify variable nucleotide positions characterized by frequent occurrence most promising for identification variants. The calculated value GD = 0.95 and RMP = 0.048 of the genetic diversity should be understood as high in the context of coding function of the analysed DNA fragment. The relatively high gene diversity and a relatively low random match probability were observed in this study.
The results showed strong agglutination of immobilized lectin with Bacillus, Staphylococcus, Streptococcus, and Pseudomonas more than agglutination with E. coli, Enterobacterium, Morganella and Gardenella.
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