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Neurospora crassa figure

Figure 1-10 Two frequently studied fungi. Top (including ascus) the yeast Saccharomyces cerevisiae. Below Neurospora crassa showing various stages. After J. Webster.93... Figure 1-10 Two frequently studied fungi. Top (including ascus) the yeast Saccharomyces cerevisiae. Below Neurospora crassa showing various stages. After J. Webster.93...
Neuron(s) 25. See also Axon of squid 24 Neurospora crassa 20 figure 21... [Pg.925]

Figure 3 The reconstitution of aponitrate reductase from the Nit-1 Neurospora crassa mutant by MPT-containing extracts from the molybdenum and tungsten enzymes. Figure 3 The reconstitution of aponitrate reductase from the Nit-1 Neurospora crassa mutant by MPT-containing extracts from the molybdenum and tungsten enzymes.
Figure 2.3 Absorption spectra of (1) toluidine blue (3.3 x 10 5 M), and dye with three PolyP fractions isolated from Neurospora crassa by consecutive treatment with (2) 0.5 N HCIO4 (PolyP(I), 3.3 x 10 M), (3) saturated NaC104 solution (PolyP(II), 3.3 x 10 M) and (4) 1% SDS, pH 7.4-7.6 (PolyP(III), 3.3 x 10-3 M) (see Table 2.1) (Chernysheva et al., 1971). Figure 2.3 Absorption spectra of (1) toluidine blue (3.3 x 10 5 M), and dye with three PolyP fractions isolated from Neurospora crassa by consecutive treatment with (2) 0.5 N HCIO4 (PolyP(I), 3.3 x 10 M), (3) saturated NaC104 solution (PolyP(II), 3.3 x 10 M) and (4) 1% SDS, pH 7.4-7.6 (PolyP(III), 3.3 x 10-3 M) (see Table 2.1) (Chernysheva et al., 1971).
Figure 8.27 Changes in the content of PolyP fractions and RNA during the growth of a culture of Neurospora crassa (Chernysheva et al., 1971) PPj, PP2, PP4 and PP5 represent the PolyP(I), PolyP(II), PolyP(IV) and PolyP(V) fractions, respectively. Figure 8.27 Changes in the content of PolyP fractions and RNA during the growth of a culture of Neurospora crassa (Chernysheva et al., 1971) PPj, PP2, PP4 and PP5 represent the PolyP(I), PolyP(II), PolyP(IV) and PolyP(V) fractions, respectively.
Figure 8.28 Changes in the content of PolyP fractions during growth of Neurospora crassa strains ad-6 (parent strain) and 30,19-3 (a leaky mutant in exopolyphosphatase), and a slime mutant devoid of the cell envelope (Trilisenko et al., 1980 1982a,b) (o) growth ( ) PolyP content in different fractions. Figure 8.28 Changes in the content of PolyP fractions during growth of Neurospora crassa strains ad-6 (parent strain) and 30,19-3 (a leaky mutant in exopolyphosphatase), and a slime mutant devoid of the cell envelope (Trilisenko et al., 1980 1982a,b) (o) growth ( ) PolyP content in different fractions.
Figure 1. Nitrate reductase from Neurospora crassa —composition and presumed electron transfer sequence (16, 18)... Figure 1. Nitrate reductase from Neurospora crassa —composition and presumed electron transfer sequence (16, 18)...
Figure 13 Properties of some zinc cluster sites observed in zinc enzymes and metallothionein. The bridging Cys residues as well as their spacing are identified for (a) Schizosaccharomyces pombe Lysine methyltransferase Clr4, (b) Neurospora crassa Histone H3 methyltransferase DlM-5, (c) /S-domain of human metallothionem-2, and(d) /3-domain of sea urchin metallothionein MTA. The PDB numbers are respectively IMVH, 1 ML9, IMHU, and IQJL... Figure 13 Properties of some zinc cluster sites observed in zinc enzymes and metallothionein. The bridging Cys residues as well as their spacing are identified for (a) Schizosaccharomyces pombe Lysine methyltransferase Clr4, (b) Neurospora crassa Histone H3 methyltransferase DlM-5, (c) /S-domain of human metallothionem-2, and(d) /3-domain of sea urchin metallothionein MTA. The PDB numbers are respectively IMVH, 1 ML9, IMHU, and IQJL...
The oxidation of 2-nitropropane by the yeast Hansenula mrakii is carried out by a flavoenzyme and produces 2 mol of acetone from 2 mol of substrate and one molecule of 02 that is activated by conversion to superoxide (Kido et al. 1978b Figure 4.50). A similar enzyme has been purified and characterized from the heterothallic ascomycete Neurospora crassa (Gorlatova et al. 1998) 2-nitropropane is the optimal substrate. [Pg.307]

Nitropropane is oxidized by Hansenula mrakii and the enzyme has been purified this is a flavodioxygenase that converts two molecules of the substrate to two molecules of acetone with the elimination of nitrite (Kido and Soda 1976) (Figure 6.119), and a similar enzyme has been isolated frm Neurospora crassa (Gorlatova... [Pg.606]

Figure 2 The Ancient Mitochondrial Mauriceville Plasmid in the Neurospora crassa. [2335] Reference Appendix 2, Explanations to the Figures... Figure 2 The Ancient Mitochondrial Mauriceville Plasmid in the Neurospora crassa. [2335] Reference Appendix 2, Explanations to the Figures...
Figure 5. Graph of Activity against Neurospora Crassa versus Beefheart Mitochondrial NADH Oxidase. Figure 5. Graph of Activity against Neurospora Crassa versus Beefheart Mitochondrial NADH Oxidase.
The cell cycle-modulated post-transcriptional model shown in Figure 5 is adequate to account for the results described for both synchronized and random populations of mammalian cells in culture. A recent report that actinomycin D stimulated the normally inducible synthesis of tyrosinase in Neurospora crassa (Horowitz et al., 1970) suggests that the type of regulation proposed in Figure 5 may extend to more primitive eukaryotic cells as well. The increasing number of reports that actinomycin D either stimulates the synthesis of certain specific proteins or else prevents their deinduction likewise strongly... [Pg.317]

Similar results have been reported for other mutants of Neurospora. The values found by Tatum and Beadle (1942) for a p-aminobenzoic-acid-requiring mutant of Neurospora crassa as a function of the concentration ofp-aminobenzoic acid added to the standard medium are shown in Figure 1-3. The growth-rate curve is similar in... [Pg.564]


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See also in sourсe #XX -- [ Pg.21 ]

See also in sourсe #XX -- [ Pg.21 ]

See also in sourсe #XX -- [ Pg.21 ]




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Neurospora crassa

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