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Pneumocandin B0

Pneumocandin B0 Suppliers list
Company Name: AFINE CHEMICALS LIMITED
Tel: 0571-85134551
Email: info@afinechem.com
Products Intro: Product Name:N-{(2R,6S,9S,11R,12R,14AS,15S,20S,23S,25AS)-20-[(1S)-3-AMINO-1-HYDROXY-3-OXOPROPYL]-23-[(1S,2S)-1,2-DIHYDROXY-2-(4-HYDROXYPHENYL)ETHYL]-2,11,12,15-TETRAHYDROXY-6-[(1S)-1-HYDROXYETHYL]-5,8,14,19,22,25-HEXAOXOTETRACOSAHYDRO-1H-DIPYRROLO[2,1-C:2',1'-L][
CAS:135575-42-7
Purity:98%+ Package:Standard or custom package Remarks:excellent quality and reliable supplier
Company Name: BOC Sciences
Tel: +16314854226
Email: inquiry@bocsci.com
Products Intro: Product Name:Pneumocandin B0
CAS:135575-42-7
Purity:>98% Package:100mg Remarks:BOC Sciences also provides custom synthesis services for Pneumocandin B0.
Company Name: Hangzhou ICH Biofarm Co., Ltd
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Products Intro: Product Name:Pneumocandin B0
CAS:135575-42-7
Purity:99.0%min Package:1kg;|5kg;|10kg
Company Name: airuikechemical co., ltd.
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Products Intro: Product Name:pneumocandin b0
CAS:135575-42-7
Purity:99.9% Package:1Kg;0.00;USD|5Kg;0.00;USD|25Kg;0.00;USD
Company Name: Shanghai Daken Advanced Materials Co.,Ltd
Tel: +86-371-66670886
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Products Intro: Product Name:Pneumocandin B0
CAS:135575-42-7
Purity:99% Package:100g ;1KG ;5KG 25KG

Pneumocandin B0 manufacturers

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  • $0.00 / 1Kg
  • 2024-04-09
  • CAS:135575-42-7
  • Min. Order: 1Kg
  • Purity: 99.9%
  • Supply Ability: 200tons
  • Pneumocandin B0
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  • $0.00 / 1kg
  • 2024-01-20
  • CAS:135575-42-7
  • Min. Order: 0.10000000149011612kg
  • Purity: 99.0%min
  • Supply Ability: 200kg
  • PNEUMOCANDIN B0
  • PNEUMOCANDIN B0 pictures
  • $12.00 / 1000g
  • 2023-03-22
  • CAS:135575-42-7
  • Min. Order: 5g
  • Purity: 94%MIN
  • Supply Ability: 100kgs
Pneumocandin B0 Basic information
Product Name:Pneumocandin B0
Synonyms:pneumocandin B(0);B0 PneuMocandin B0;Caspofungin Intermediate;neumocandin B0;US-DMF No.: 034006;N-{(2R,6S,9S,11R,12R,14AS,15S,20S,23S,25AS)-20-[(1S)-3-AMINO-1-HYDROXY-3-OXOPROPYL]-23-[(1S,2S)-1,2-DIHYDROXY-2-(4-HYDROXYPHENYL)ETHYL]-2,11,12,15-TETRAHYDROXY-6-[(1S)-1-HYDROXYETHYL]-5,8,14,19,22,25-HEXAOXOTETRACOSAHYDRO-1H-DIPYRROLO[2,1-C:2',1'-L][;Micafungin Impurity 14 (Pneumocandin B0);L-688786
CAS:135575-42-7
MF:C50H80N8O17
MW:1065.21
EINECS:629-746-0
Product Categories:Other APIs;Chiral Reagents;Heterocycles;Intermediates & Fine Chemicals;Pharmaceuticals;API;Antifungals;135575-42-7
Mol File:135575-42-7.mol
Pneumocandin B0 Structure
Pneumocandin B0 Chemical Properties
Melting point >230°C (dec.)
Boiling point 1442.9±65.0 °C(Predicted)
density 1.41±0.1 g/cm3(Predicted)
storage temp. Sealed in dry,Store in freezer, under -20°C
solubility DMSO (Slightly), Methanol (Sparingly)
pka9.86±0.26(Predicted)
form Solid
color White to Off-White
λmax276nm(MeOH)(lit.)
InChIKeyDQXPFAADCTZLNL-PYWTXGKPNA-N
Safety Information
HS Code 2941.90.3000
MSDS Information
Pneumocandin B0 Usage And Synthesis
DescriptionPneumocandin B0 is an antifungal lipopeptide that acts by inhibiting the synthesis of β-(1,3)-D-glucan, a component of fungal cell walls (IC50s = 70 and 67 ng/ml for inhibiting glucan synthase in C. albicans and A. fumigatus, respectively). It can be used to synthesize the echinocandin caspofungin acetate .
UsesPneumocandin B0 is the major analogue of a family of lipopeptides isolated from several species of several different genera, such as Cryptosporiopsis, Glarea and Pezicula. Pneumocandin B0 is a potent antifungal and acts by inhibition of the synthesis of β-(1,3)-D-glucan, an essential component of the cell wall of susceptible fungi.
DefinitionChEBI: An echinocandin initially isolated as a very minor bioactive fermentation product of Glarea lozoyensis (originally known as Zalerion arboricola). Subsequent random mutagenesis work and optimisation of the fermentation medium permi ted the industrial production of pneumocandin B0, which is used as the starting point for the synthesis of the antifungal drug caspofungin.
Biosynthesis Pneumocandin B0 (PB0), the precursor of the antifungal drug caspofungin, is a secondary metabolite of the fungus G. lozoyensis, and its biosynthesis is affected by the types and concentrations of nutrients in the medium. Acetyl-CoA and NADPH were identified as the main factors limiting pneumocandin B0 biosynthesis. Other metabolites, such as pyruvate, α-ketoglutaric acid, lactate, unsaturated fatty acids, and previously unreported metabolite γ-aminobutyric acid, were shown to play important roles in pneumocandin B0 biosynthesis and cell growth. The carbon source is a crucial factor affecting cell growth and PB0 production. Transcriptome analysis showed that when G. lozoyensis was cultured with fructose as the carbon source, the expression of genes in the PB0 synthetic gene cluster was downregulated. At the same time, the PB0 yield was increased by 54.76%. When fructose was used as the carbon source, PPP, glycolysis, and branched-chain amino acid metabolism of G. lozoyensis were promoted, which may have provided more NADPH and acetyl-CoA for biosynthesis. Furthermore, the downregulation of the PB0 biosynthesis gene cluster and the TCA cycle resulted in more acetyl-CoA for fatty acid synthesis[3–4].
General DescriptionPneumocandin B0, the precursor of the antifungal drug caspofungin, is a lipohexapeptide produced by the fungus Glarea lozoyensis. Oxidative stress and the resulting reactive oxygen species (ROS) are involved in regulating the biosynthesis of it. Acetyl-CoA and NADPH are major factors limiting the biosynthesis of pneumocandin B0. Other metabolites, such as pyruvate, α-ketoglutaric acid, lactate, unsaturated fatty acids, and metabolite γ-aminobutyric acid, also play an important role in the biosynthesis of pneumocandin B0 and cell growth[1-2].
Mechanism of actionPneumocandin B0 is a potent antifungal and acts by inhibiting the synthesis of β-(1,3)-D-glucan, an essential component of the cell wall of susceptible fungi.
Solubility in organicsPneumocandin B0 is soluble in ethanol, methanol, DMF and DMSO.
References [1] Dong Y, et al. Glyap1 regulates pneumocandin B0 synthesis by controlling the intracellular redox balance in Glarea lozoyensis. Applied Microbiology and Biotechnology, 2021; 105: 6707–6718.
[2] Song P, et al. Metabolomics profiling reveals the mechanism of increased pneumocandin B0 production by comparing mutant and parent strains. Journal of Industrial Microbiology Biotechnology, 2018; 45: 767–780.
[3] Ke Zhang. Comparative Transcriptomics Analysis of the Responses of the Filamentous Fungus Glarea lozoyensis to Different Carbon Sources. Frontiers in Microbiology (2020): 190.
[4] Ping Song. Metabolomics profiling reveals the mechanism of increased pneumocandin B0 production by comparing mutant and parent strains. Journal of Industrial Microbiology Biotechnology 45 9 (2018): 767–780.
Pneumocandin B0 Preparation Products And Raw materials
Tag:Pneumocandin B0(135575-42-7) Related Product Information
Pneumocandin A0, 1-[(4R,5S)-5-[(2-aminoethyl)amino]-N2-(10,12-dimethyl-1-oxotetradecyl)-4-hydroxy-L-ornithine]-5-[(3R)-3-hydroxy-L-ornithine]-6-[(4R)-4-hydroxy-L-proline]- pneumocandin C(0) Butylated hydroxyanisole Pneumocandin Pneumocandin B0