By Marvin J. Weinstein and Gerald H. Wagman (Eds.)
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Additional info for ANTIBIOTICS: ISOLATION, SEPARATION AND PURIFICATION
35. E . Katz a n d A. 36. S . A . Waksman a n d M . 519-528. 37. S . J. Angyal, E. B u l l o c k , W . G . H a n g e r , W. C. H o w e l l a n d A. W . J o h n s o n , J . Chem. S O C . ( 1 9 5 7 ) 1 5 9 2 - 1 6 0 2 . 38. H. H. Martin and G . 90-108. 39. M . F u r u k a w a , A. I n o u e , K . A s a n o a n d J . Kawamata, J . Schmidt-Kastner, Naturwiss. 5 1 ( 1 9 6 4 ) 38-39. B. Mauger, u n p u b l i s h e d r e s u l t s . T i s h l e r , J . B i o l . Chem. 1 4 2 ( 1 9 4 2 ) Pampus, A r c h .
A n t i b i a f i c u s was measured by the pa er chromatographic technique (solvent a)59. Incorporation of P4C-labeled L-isoleucine (as D-aLlaisolFucine) and threonine into actinomycins by S. a n t i b i o t i c u b was examined by PC (solvent a)42, and in studies with 14C-labeled sarcosine, glycine and methionine, solvents d, i, j were employed41. Incorporation of tritiated thanb-3-methylproline (but not the c i b isomer) into actinomycin by S. a n t i b i a t i c u b was demonstrated by descending (solvents 2, k) and two-dimensional (solvents m and c) PCfi0.
L . B e l l and S . S . Danyluk, B i o c h e m i s t r y 11 (1972) 2402-2411. 93. V . H o l l s t e i n , E. Breitmaier a n d G . J u n g , J . A m e r . (1971) 2221-2226. Chem. SOC. 96 (1974) 8036-8040. 94. H. L a c k n e r , Angew. Chem. 1 4 (1975) 375-386. 95. H. Booth, W. J . R z e s z o t a r s k i and A . B . Mauger, Org. Mag. Resonance 8 (1976) 219-223. 96. A. B . Mauger, i n , " P e p t i d e s , C h e m i s t r y , S t r u c t u r e and B i o l o g y , " P r o c . 4 t h h e r . P e p t i d e Symp.
ANTIBIOTICS: ISOLATION, SEPARATION AND PURIFICATION by Marvin J. Weinstein and Gerald H. Wagman (Eds.)