Human diploid cell strains develop progressively higher levels of specific catalase activity as they grow. Following subculture activity falls again. A diploid cell strain heterozygous for the gene for acatalasia I (acatalasemia) was found to develop specific catalase activity at proportionately the same rate as normal cell strains. Yet the mutant gene reduced the absolute level of specific catalase activity which the culture attained at any given point in time. In this respect the heterozygous acatalasia I strain resembles the homozygous acatalasia II strain previously reported.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/49864/1/1040710206_ftp.pd
<p><b>A.</b> Overnight cultures of wildtype or <i>oxyR</i> mutants containing promoter-<i>luxCDABE</...
Johnson and Wood constructed recombinant inbred strains of Caenorhabditis elegans with life spans ra...
For the purpose to clarify whether minimal catalatic activity exists in Japanese acatalasemic cells ...
The specific catalase activity of human diploid cell strains increases with progressive growth of th...
It was shown previously that the specific catalase activity of human diploid cell strains falls imme...
Contact-inhibited catalase-deficient fibroblast cell strain has been established from the homozygous...
The parental strain (A+T+) of Saccharomyces cerevisiae and mutants, deficient in catalase T (A+T-), ...
The parental strain (A+T+) of Saccharomyces cerevisiae and mutants, deficient in catalase T (A+T-), ...
The concentration of catalase protein in anemic blood with enhanced population of reticulocytes and ...
<p>In the screen for catalase deficiency two or more independent transposon insertions were obtained...
A mutant of Saccharomyces cerevisiae which displays catalase activity when grown under strictly anae...
<p>(<i>A</i>) Mycelia of the single, quadruple and quintuple catalase mutants and wild type (WT) wer...
Blood samples were taken from the orbital sinus (venous) of normal (C3H/C(sa)C(sa)), acatalasemic (C...
The parental strain (A+T+) of Saccharomyces cerevisiae and mutants, deficient in catalase T (A+T-), ...
The properties of catalases in the liver homogenate of acatalasemic (C3H/C(sb)C(sb)), hypocatalasemi...
<p><b>A.</b> Overnight cultures of wildtype or <i>oxyR</i> mutants containing promoter-<i>luxCDABE</...
Johnson and Wood constructed recombinant inbred strains of Caenorhabditis elegans with life spans ra...
For the purpose to clarify whether minimal catalatic activity exists in Japanese acatalasemic cells ...
The specific catalase activity of human diploid cell strains increases with progressive growth of th...
It was shown previously that the specific catalase activity of human diploid cell strains falls imme...
Contact-inhibited catalase-deficient fibroblast cell strain has been established from the homozygous...
The parental strain (A+T+) of Saccharomyces cerevisiae and mutants, deficient in catalase T (A+T-), ...
The parental strain (A+T+) of Saccharomyces cerevisiae and mutants, deficient in catalase T (A+T-), ...
The concentration of catalase protein in anemic blood with enhanced population of reticulocytes and ...
<p>In the screen for catalase deficiency two or more independent transposon insertions were obtained...
A mutant of Saccharomyces cerevisiae which displays catalase activity when grown under strictly anae...
<p>(<i>A</i>) Mycelia of the single, quadruple and quintuple catalase mutants and wild type (WT) wer...
Blood samples were taken from the orbital sinus (venous) of normal (C3H/C(sa)C(sa)), acatalasemic (C...
The parental strain (A+T+) of Saccharomyces cerevisiae and mutants, deficient in catalase T (A+T-), ...
The properties of catalases in the liver homogenate of acatalasemic (C3H/C(sb)C(sb)), hypocatalasemi...
<p><b>A.</b> Overnight cultures of wildtype or <i>oxyR</i> mutants containing promoter-<i>luxCDABE</...
Johnson and Wood constructed recombinant inbred strains of Caenorhabditis elegans with life spans ra...
For the purpose to clarify whether minimal catalatic activity exists in Japanese acatalasemic cells ...