Claims
- 1. A process for preparing optically active L-tryptophanes having the formula, ##STR5## wherein X represents hydrogen, hydroxyl group, halogen atoms, lower alkyl groups or lower alkoxy groups comprising the steps of interacting a DL-tryptophane amide having the formula ##STR6## wherein X is as defined above with the culture product of a microorganism selected from the group consisting of Rhizopus chinensis, Gibberella fujikuroi, Trichoderma viride, Torulopsis candida, Candida utilis, Mycobacterium phlei, Nocardia asteroides, Streptomyces griseus, Enterobacter cloacae, Bacillus subtilis, Pseudomonas fluorescens, Klebseilla pneumoniae, as Aerobacter aerogenes and Rhodotorula glutinis va. rubescenes and separating the resulting L-tryptophanes from the hydrolyzed mixture.
- 2. A process as claimed in claim 1, wherein the reaction temperature of the asymmetric hydrolysis of L-tryptophane amides is within the range of from 20.degree. to 50.degree. C.
- 3. A process as claimed in claim 1, wherein the reaction time of the asymmetric hydrolysis of L-tryptophane amides is within the range of from 5 to 50 hours.
- 4. A process as claimed in claim 1, wherein the amount of the microorganism is in a weight ratio of from 0.01 to 2, in terms of the freeze dried cells, based on the weight of the DL-tryptophane amides.
- 5. A process for preparing optically active D-tryptophanes having the formula, ##STR7## wherein X represents hydrogen, hydroxyl group, halogen atoms, lower alkyl groups or lower alkoxy groups comprising the steps of:
- (a) interacting a DL-tryptophane amide having the formula ##STR8## wherein X is as defined above with the culture product of a microorganism selected from the group consisting of Rhizopus chinensis, Gibberella fujikuroi, Trichoderma viride, Torulopsis candida, Candida utilis, Mycobacterium phlei, Nocardia asteroides, Streptomyces griseus, Enterobacter cloacae, Bacillus subtilis, Pseudomonas fluroescens, Klebseiella pneumonae, as as Aerobacter aerogenes and Rhodotorula glutinis va. rubescens whereby the asymmetric hydrolysis of L-tryptophane amides is effected;
- (b) separating the resultant L-tryptophanes obtained from the asymmetric hydrolysis of L-tryptophane amides, and;
- (c) hydrolyzing the resultant D-tryptophane amides.
- 6. A process as claimed in claim 5, wherein the reaction temperature of the asymmetric hydrolysis of L-tryptophane amides is within the range of from 20.degree. to 50.degree. C.
- 7. A process as claimed in claim 5, wherein the reaction time of the asymmetric hydrolysis of L-tryptophane amides is within the range of from 5 to 50 hours.
- 8. A process as claimed in claim 5, wherein the amount of the microorganism is in a weight ratio of from 0.01 to 2, in terms of the freeze dried cells based, on the weight of the DL-tryptophane amides.
- 9. A process as claimed in claim 5, wherein the hydrolysis of the D-tryptophane amides is carried out in the presence of an aqueous acid or alkaline solution.
Priority Claims (1)
Number |
Date |
Country |
Kind |
55-84618 |
Jun 1980 |
JPX |
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Parent Case Info
This application is a continuation of Ser. No. 276,057, June 22, 1981, abandoned.
Foreign Referenced Citations (3)
Number |
Date |
Country |
10146 |
Mar 1958 |
JPX |
15541 |
Aug 1967 |
JPX |
268326 |
May 1950 |
CHX |
Non-Patent Literature Citations (2)
Entry |
Chibata et al., Bull. Agr. Chem. Soc. Japan, vol. 21, No. 1, pp. 62-66, (1951). |
Merck Index 9th Ed., Entry 8815, Merck & Co., Rahway, N.J., (1976). |
Continuations (1)
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Number |
Date |
Country |
Parent |
276057 |
Jun 1981 |
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