Javascript must be enabled to continue!
METABOLISM OF S AND R FORMS OF PNEUMOCOCCUS
View through CrossRef
In the present paper are given the results of studies on the respiratory and glycolytic metabolism of Pneumococcus Types I, II, and III, and of the R forms derived from these. The metabolism of the S and R forms are compared, and the relationship between changes in virulence, changes in chemical constitution, and changes in metabolism is discussed.
1. There is no respiration in Ringer solution unless sugar is added.
2. The pH (7.8) that is optimal for growth of pneumococcus is also the pH at which the maximum respiration occurs.
3. The intensity of respiration varies with type in the strains used. The respiratory capacity of Type I is 56 per cent of that of Type III, which in turn is 71 per cent of that of Type II.
4. The anaerobic glycolysis is approximately the same for all three groups.
5. Pneumococcus Type I is capable of aerobic glycolysis.
6. Pneumococcus Types II and III do not effect glycolysis aerobically.
7. The energy set free in respiration is considerably greater than that set free in glycolysis.
8. The oxidation quotient for lactic acid is of the same order as found by Meyerhof in muscle and by Warburg for mammalian tissues.
9. The respiratory capacities of Types I and III are changed on conversion of the smooth to the rough form. (a) For Type I the respiration is increased 110 per cent. (b) For Type III the respiration is diminished 45 per cent. (c) For Type II there is only a slight diminution in respiratory activity (16 per cent).
10. The anaerobic glycolysis is increased about 25 per cent on the average for all R forms irrespective of type derivation.
11. Type I on being converted to the R form, loses its capacity for aerobic glycolysis.
12. Type III, on being converted to the R form, gains the capacity for aerobic glycolysis.
13. The oxygen consumption by Pneumococcus compared with that of the human tubercle bacillus and of mammalian tissue, for the same time intervals, weight for weight, is as follows: (a) Pneumococcus Type I consumes thirteen times as much oxygen as does the tubercle bacillus (H37). (b) Pneumococcus Type II consumes thirty-four times as much oxygen as does the tubercle bacillus. (c) Pneumococcus Type II consumes over twenty times as much oxygen as does isolated rat kidney tissue, and almost 100 times as much oxygen as does isolated dog muscle.
Title: METABOLISM OF S AND R FORMS OF PNEUMOCOCCUS
Description:
In the present paper are given the results of studies on the respiratory and glycolytic metabolism of Pneumococcus Types I, II, and III, and of the R forms derived from these.
The metabolism of the S and R forms are compared, and the relationship between changes in virulence, changes in chemical constitution, and changes in metabolism is discussed.
1.
There is no respiration in Ringer solution unless sugar is added.
2.
The pH (7.
8) that is optimal for growth of pneumococcus is also the pH at which the maximum respiration occurs.
3.
The intensity of respiration varies with type in the strains used.
The respiratory capacity of Type I is 56 per cent of that of Type III, which in turn is 71 per cent of that of Type II.
4.
The anaerobic glycolysis is approximately the same for all three groups.
5.
Pneumococcus Type I is capable of aerobic glycolysis.
6.
Pneumococcus Types II and III do not effect glycolysis aerobically.
7.
The energy set free in respiration is considerably greater than that set free in glycolysis.
8.
The oxidation quotient for lactic acid is of the same order as found by Meyerhof in muscle and by Warburg for mammalian tissues.
9.
The respiratory capacities of Types I and III are changed on conversion of the smooth to the rough form.
(a) For Type I the respiration is increased 110 per cent.
(b) For Type III the respiration is diminished 45 per cent.
(c) For Type II there is only a slight diminution in respiratory activity (16 per cent).
10.
The anaerobic glycolysis is increased about 25 per cent on the average for all R forms irrespective of type derivation.
11.
Type I on being converted to the R form, loses its capacity for aerobic glycolysis.
12.
Type III, on being converted to the R form, gains the capacity for aerobic glycolysis.
13.
The oxygen consumption by Pneumococcus compared with that of the human tubercle bacillus and of mammalian tissue, for the same time intervals, weight for weight, is as follows: (a) Pneumococcus Type I consumes thirteen times as much oxygen as does the tubercle bacillus (H37).
(b) Pneumococcus Type II consumes thirty-four times as much oxygen as does the tubercle bacillus.
(c) Pneumococcus Type II consumes over twenty times as much oxygen as does isolated rat kidney tissue, and almost 100 times as much oxygen as does isolated dog muscle.
Related Results
STUDIES ON THE SOMATIC C POLYSACCHARIDE OF PNEUMOCOCCUS
STUDIES ON THE SOMATIC C POLYSACCHARIDE OF PNEUMOCOCCUS
A study of 46 cases of pneumococcus pneumonia has shown that a characteristic response may be elicited by the intracutaneous injection of 0.1 mg. of the somatic C polysaccharide of...
VARIETIES OF PNEUMOCOCCUS AND THEIR RELATION TO LOBAR PNEUMONIA
VARIETIES OF PNEUMOCOCCUS AND THEIR RELATION TO LOBAR PNEUMONIA
A study of pneumococci isolated from individuals suffering from lobar pneumonia has shown that the majority of these organisms fall into definite biological groups. These groups ha...
Study on non-targeted metabolomics of intestinal tract of DEV- infected ducks
Study on non-targeted metabolomics of intestinal tract of DEV- infected ducks
Abstract
Introduction
Duck enteritis virus (DEV) mainly causes infectious diseases characterized by intestinal hemorrhage, inflammation and parenchymal organ degeneration i...
Review dari Metabolisme Karbohidrat, Lipid, Protein, dan Asam Nukleat
Review dari Metabolisme Karbohidrat, Lipid, Protein, dan Asam Nukleat
Artikel review ini mengulas tentang prinsip dan proses metabolisme karbohidrat, lipid, protein dan asam nukeat pada organisme. Telaah pustaka yang disajikan dalam review ini bersu...
Heat Labile Opsonins to Pneumococcus
Heat Labile Opsonins to Pneumococcus
Abstract
Previous studies have shown that the interaction of pneumococci and the heat labile opsonin (HLO) system results in the cleavage of C3 and the fixation of C...
Mechanisms of 10-Hydroxyoctadecanoic acid resistance in
Streptococcus pneumoniae
Mechanisms of 10-Hydroxyoctadecanoic acid resistance in
Streptococcus pneumoniae
ABSTRACT
Profiles of human nasal colonization consistently demonstrate that
Staphylococcus aureus
and
...
Clinical streptococcal isolates, distinct from
Streptococcus pneumoniae,
but containing the β-glucosyltransferase
tts
gene and expressing serotype 37 capsular polysaccharide
Clinical streptococcal isolates, distinct from
Streptococcus pneumoniae,
but containing the β-glucosyltransferase
tts
gene and expressing serotype 37 capsular polysaccharide
The major virulence factor of the pneumococcus, and target for conjugate vaccines, is the polysaccharide capsule, which is usually encoded by the highly variable
...
Untargeted metabolomics of the intestinal tract of DEV-infected ducks
Untargeted metabolomics of the intestinal tract of DEV-infected ducks
Abstract
Introduction
Duck enteritis virus (DEV) mainly causes infectious diseases characterized by intestinal haemorrhage, inflammation and parench...

