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1.
Org Lett ; 26(12): 2489-2494, 2024 Mar 29.
Article in English | MEDLINE | ID: mdl-38498918

ABSTRACT

Site-selective modification of complex peptides and the functionalization of their C-H bonds hold great promise for expanding their use in therapeutics and biomedical research. Herein, we leverage the power of late-stage chemoenzymatic catalysis using an indole prenyltransferase (IPT) enzyme and alkyl diphosphates to specifically modify the indole ring of tryptophan in clinically relevant peptides. Furthermore, the installed handle enables bioorthogonal click chemistry through an inverse electron-demand Diels-Alder (IEDDA) reaction with a biotin-conjugated tetrazine probe.


Subject(s)
Heterocyclic Compounds , Tryptophan , Peptides , Cycloaddition Reaction , Indoles
2.
Chembiochem ; 24(17): e202300372, 2023 09 01.
Article in English | MEDLINE | ID: mdl-37338668

ABSTRACT

The late-stage functionalization of peptides and proteins holds significant promise for drug discovery and facilitates bioorthogonal chemistry. This selective functionalization leads to innovative advances in in vitro and in vivo biological research. However, it is a challenging endeavor to selectively target a certain amino acid or position in the presence of other residues containing reactive groups. Biocatalysis has emerged as a powerful tool for selective, efficient, and economical modifications of molecules. Enzymes that have the ability to modify multiple complex substrates or selectively install nonnative handles have wide applications. Herein, we highlight enzymes with broad substrate tolerance that have been demonstrated to modify a specific amino acid residue in simple or complex peptides and/or proteins at late-stage. The different substrates accepted by these enzymes are mentioned together with the reported downstream bioorthogonal reactions that have benefited from the enzymatic selective modifications.


Subject(s)
Peptides , Proteins , Catalysis , Proteins/chemistry , Peptides/chemistry , Amino Acids/chemistry , Biocatalysis
3.
ChemCatChem ; 15(11)2023 Jun 09.
Article in English | MEDLINE | ID: mdl-37366495

ABSTRACT

Indole is a significant structural moiety and functionalization of the C-H bond in indole-containing molecules expands their chemical space, and modifies their properties and/or activities. Indole prenyltransferases (IPTs) catalyze the direct regiospecific installation of prenyl, C5 carbon units, on indole-derived compounds. IPTs have shown relaxed substrate flexibility enabling them to be used as tools for indole functionalization. However, the mechanism by which certain IPTs target a specific carbon position is not fully understood. Herein, we use structure-guided site-directed mutagenesis, in vitro enzymatic reactions, kinetics and structural-elucidation of analogs to verify the key catalytic residues that control the regiospecificity of all characterized regiospecific C6 IPTs. Our results also demonstrate that substitution of PriB_His312 to Tyr leads to the synthesis of analogs prenylated at different positions than C6. This work contributes to understanding of how certain IPTs can access a challenging position in indole-derived compounds.

4.
Chemistry ; 28(20): e202104614, 2022 Apr 06.
Article in English | MEDLINE | ID: mdl-35178791

ABSTRACT

The late-stage functionalization of indole- and tryptophan-containing compounds with reactive moieties facilitates downstream diversification and leads to changes in their biological properties. Here, the synthesis of two hydroxy-bearing allyl pyrophosphates is described. A chemoenzymatic method is demonstrated which uses a promiscuous indole prenyltransferase enzyme to install a dual reactive hydroxy-bearing allyl moiety directly on the indole ring of tryptophan-containing peptides. This is the first report of late-stage indole modifications with this reactive group.


Subject(s)
Dimethylallyltranstransferase , Tryptophan , Indoles/chemistry , Peptides/chemistry , Tryptophan/chemistry
5.
ACS Chem Biol ; 16(12): 2816-2824, 2021 12 17.
Article in English | MEDLINE | ID: mdl-34763417

ABSTRACT

We report the identification of the ter gene cluster responsible for the formation of the p-terphenyl derivatives terfestatins B and C and echoside B from the Appalachian Streptomyces strain RM-5-8. We characterize the function of TerB/C, catalysts that work together as a dual enzyme system in the biosynthesis of natural terphenyls. TerB acts as a reductase and TerC as a dehydratase to enable the conversion of polyporic acid to a terphenyl triol intermediate. X-ray crystallography of the apo and substrate-bound forms for both enzymes provides additional mechanistic insights. Validation of the TerC structural model via mutagenesis highlights a critical role of arginine 143 and aspartate 173 in catalysis. Cumulatively, this work highlights a set of enzymes acting in harmony to control and direct reactive intermediates and advances fundamental understanding of the previously unresolved early steps in terphenyl biosynthesis.


Subject(s)
Hydro-Lyases/metabolism , Oxidoreductases/metabolism , Terphenyl Compounds/chemistry , Amino Acid Sequence , Arginine/chemistry , Aspartic Acid/chemistry , Biosynthetic Pathways , Catalysis , Crystallography, X-Ray , Escherichia coli/metabolism , Models, Molecular , Protein Binding , Streptomyces/metabolism , Structure-Activity Relationship
6.
Chemistry ; 27(12): 4176-4182, 2021 Feb 24.
Article in English | MEDLINE | ID: mdl-33244806

ABSTRACT

Daptomycin (DAP) is a calcium (Ca2+ )-dependent FDA-approved antibiotic drug for the treatment of Gram-positive infections. It possesses a complex pharmacophore hampering derivatization and/or synthesis of analogues. To mimic the Ca2+ -binding effect, we used a chemoenzymatic approach to modify the tryptophan (Trp) residue of DAP and synthesize kinetically characterized and structurally elucidated regiospecific Trp-modified DAP analogues. We demonstrated that the modified DAPs are several times more active than the parent molecule against antibiotic-susceptible and antibiotic-resistant Gram-positive bacteria. Strikingly, and in contrast to the parent molecule, the DAP derivatives do not rely on calcium or any additional elements for activity.


Subject(s)
Daptomycin , Anti-Bacterial Agents/pharmacology , Calcium , Gram-Positive Bacteria , Microbial Sensitivity Tests
7.
J Nat Prod ; 82(12): 3469-3476, 2019 12 27.
Article in English | MEDLINE | ID: mdl-31833370

ABSTRACT

We report the isolation and characterization of three new nybomycins (nybomycins B-D, 1-3) and six known compounds (nybomycin, 4; deoxynyboquinone, 5; α-rubromycin, 6; ß-rubromycin, 7; γ-rubromycin, 8; and [2α(1E,3E),4ß]-2-(1,3-pentadienyl)-4-piperidinol, 9) from the Rock Creek (McCreary County, KY) underground coal mine acid reclamation site isolate Streptomyces sp. AD-3-6. Nybomycin D (3) and deoxynyboquinone (5) displayed moderate (3) to potent (5) cancer cell line cytotoxicity and displayed weak to moderate anti-Gram-(+) bacterial activity, whereas rubromycins 6-8 displayed little to no cancer cell line cytotoxicity but moderate to potent anti-Gram-(+) bacterial and antifungal activity. Assessment of the impact of 3 or 5 cancer cell line treatment on 4E-BP1 phosphorylation, a predictive marker of ROS-mediated control of cap-dependent translation, also revealed deoxynyboquinone (5)-mediated downstream inhibition of 4E-BP1p. Evaluation of 1-9 in a recently established axolotl embryo tail regeneration assay also highlighted the prototypical telomerase inhibitor γ-rubromycin (8) as a new inhibitor of tail regeneration. Cumulatively, this work highlights an alternative nybomycin production strain, a small set of new nybomycin metabolites, and previously unknown functions of rubromycins (antifungal activity and inhibition of tail regeneration) and also provides a basis for revision of the previously proposed nybomycin biosynthetic pathway.


Subject(s)
Streptomyces/metabolism , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/pharmacology , Antifungal Agents/chemistry , Antifungal Agents/pharmacology , Cell Line, Tumor , Drug Screening Assays, Antitumor , Gram-Positive Bacteria/drug effects , Humans , Molecular Structure , Quinolones/chemistry , Quinolones/metabolism , Quinolones/pharmacology , Spectrum Analysis/methods
8.
J Nat Prod ; 82(6): 1686-1693, 2019 06 28.
Article in English | MEDLINE | ID: mdl-31117525

ABSTRACT

The structures and bioactivities of three unprecedented fused 5-hydroxyquinoxaline/alpha-keto acid amino acid metabolites (baraphenazines A-C, 1-3), two unique diastaphenazine-type metabolites (baraphenazines D and E, 4 and 5) and two new phenazinolin-type (baraphenazines F and G, 6 and 7) metabolites from the Himalayan isolate Streptomyces sp. PU-10A are reported. This study highlights the first reported bacterial strain capable of producing diastaphenazine-type, phenazinolin-type, and izumiphenazine A-type metabolites and presents a unique opportunity for the future biosynthetic interrogation of late-stage phenazine-based metabolite maturation.


Subject(s)
Anti-Bacterial Agents/metabolism , Phenazines/metabolism , Quinoxalines/chemistry , Streptomyces/chemistry , Anti-Bacterial Agents/chemistry , Molecular Structure , Phenazines/chemistry
9.
J Nat Prod ; 81(11): 2560-2566, 2018 11 26.
Article in English | MEDLINE | ID: mdl-30418763

ABSTRACT

The isolation and structure elucidation of four new naturally occurring amino-nucleoside [puromycins B-E (1-4)] metabolites from a Himalayan isolate ( Streptomyces sp. PU-14-G, isolated from the Bara Gali region of northern Pakistan) is reported. Consistent with prior reports, comparative antimicrobial assays revealed the need for the free 2″-amine for anti-Gram-positive bacteria and antimycobacterial activity. Similarly, comparative cancer cell line cytotoxicity assays highlighted the importance of the puromycin-free 2″-amine and the impact of 3'-nucleoside substitution. These studies extend the repertoire of known naturally occurring puromycins and their corresponding SAR. Notably, 1 represents the first reported naturally occurring bacterial puromycin-related metabolite with a 3'- N-amino acid substitution that differs from the 3'- N-tyrosinyl of classical puromycin-type natural products. This discovery suggests the biosynthesis of 1 in Streptomyces sp. PU-14G may invoke a uniquely permissive amino-nucleoside synthetase and/or multiple synthetases and sets the stage for further studies to elucidate, and potentially exploit, new biocatalysts for puromycin chemoenzymatic diversification.


Subject(s)
Nucleosides/metabolism , Puromycin/chemistry , Puromycin/isolation & purification , Streptomyces/metabolism , Gram-Positive Bacteria/drug effects , Microbial Sensitivity Tests , Molecular Structure , Mycobacterium/drug effects , Pakistan , Puromycin/biosynthesis , Puromycin/pharmacology
10.
J Nat Prod ; 80(4): 1141-1149, 2017 04 28.
Article in English | MEDLINE | ID: mdl-28358212

ABSTRACT

The structures of 12 new "enantiomeric"-like abyssomicin metabolites (abyssomicins M-X) from Streptomyces sp. LC-6-2 are reported. Of this set, the abyssomicin W (11) contains an unprecedented 8/6/6/6 tetracyclic core, while the bicyclic abyssomicin X (12) represents the first reported naturally occurring linear spirotetronate. Metabolite structures were determined based on spectroscopic data and X-ray crystallography, and Streptomyces sp. LC-6-2 genome sequencing also revealed the corresponding putative biosynthetic gene cluster.


Subject(s)
Bridged Bicyclo Compounds, Heterocyclic/isolation & purification , Spiro Compounds/isolation & purification , Streptomyces/chemistry , Bridged Bicyclo Compounds, Heterocyclic/chemistry , Coal , Crystallography, X-Ray , Molecular Conformation , Molecular Structure , Multigene Family , Nuclear Magnetic Resonance, Biomolecular , Spiro Compounds/chemistry , Streptomyces/genetics
11.
Angew Chem Int Ed Engl ; 56(11): 2994-2998, 2017 03 06.
Article in English | MEDLINE | ID: mdl-28140487

ABSTRACT

Four cyclopentenone-containing ansamycin polyketides (mccrearamycins A-D), and six new geldanamycins (Gdms B-G, including new linear and mycothiol conjugates), were characterized as metabolites of Streptomyces sp. AD-23-14 isolated from the Rock Creek underground coal mine acid drainage site. Biomimetic chemical conversion studies using both simple synthetic models and Gdm D confirmed that the mccrearamycin cyclopentenone derives from benzilic acid rearrangement of 19-hydroxy Gdm, and thereby provides a new synthetic derivatization strategy and implicates a potential unique biocatalyst in mccrearamycin cyclopentenone formation. In addition to standard Hsp90α binding and cell line cytotoxicity assays, this study also highlights the first assessment of Hsp90α modulators in a new axolotl embryo tail regeneration (ETR) assay as a potential new whole animal assay for Hsp90 modulator discovery.


Subject(s)
Coal/microbiology , Cyclopentanes/pharmacology , HSP90 Heat-Shock Proteins/antagonists & inhibitors , Lactams, Macrocyclic/pharmacology , Streptomyces/chemistry , Cell Line, Tumor , Cell Survival/drug effects , Cyclopentanes/chemistry , Cyclopentanes/isolation & purification , HSP90 Heat-Shock Proteins/metabolism , Humans , Kentucky , Lactams, Macrocyclic/chemistry , Lactams, Macrocyclic/isolation & purification , Molecular Conformation , Stereoisomerism , Streptomyces/metabolism
12.
Nat Chem Biol ; 13(4): 366-368, 2017 04.
Article in English | MEDLINE | ID: mdl-28166207

ABSTRACT

This study highlights the biochemical and structural characterization of the L-tryptophan C6 C-prenyltransferase (C-PT) PriB from Streptomyces sp. RM-5-8. PriB was found to be uniquely permissive to a diverse array of prenyl donors and acceptors including daptomycin. Two additional PTs also produced novel prenylated daptomycins with improved antibacterial activities over the parent drug.


Subject(s)
Dimethylallyltranstransferase/chemistry , Dimethylallyltranstransferase/metabolism , Streptomyces/enzymology , Models, Molecular , Molecular Structure , Substrate Specificity
13.
J Nat Prod ; 80(1): 2-11, 2017 01 27.
Article in English | MEDLINE | ID: mdl-28029795

ABSTRACT

The isolation and structure elucidation of six new bacterial metabolites [spoxazomicin D (2), oxachelins B and C (4, 5), and carboxamides 6-8] and 11 previously reported bacterial metabolites (1, 3, 9-12a, and 14-18) from Streptomyces sp. RM-14-6 is reported. Structures were elucidated on the basis of comprehensive 1D and 2D NMR and mass spectrometry data analysis, along with direct comparison to synthetic standards for 2, 11, and 12a,b. Complete 2D NMR assignments for the known metabolites lenoremycin (9) and lenoremycin sodium salt (10) were also provided for the first time. Comparative analysis also provided the basis for structural revision of several previously reported putative aziridine-containing compounds [exemplified by madurastatins A1, B1, C1 (also known as MBJ-0034), and MBJ-0035] as phenol-dihydrooxazoles. Bioactivity analysis [including antibacterial, antifungal, cancer cell line cytotoxicity, unfolded protein response (UPR) modulation, and EtOH damage neuroprotection] revealed 2 and 5 as potent neuroprotectives and lenoremycin (9) and its sodium salt (10) as potent UPR modulators, highlighting new functions for phenol-oxazolines/salicylates and polyether pharmacophores.


Subject(s)
Anti-Bacterial Agents/isolation & purification , Anti-Bacterial Agents/pharmacology , Antifungal Agents/isolation & purification , Antifungal Agents/pharmacology , Ethers/chemistry , Ethers/pharmacology , Neuroprotective Agents/isolation & purification , Neuroprotective Agents/pharmacology , Oligopeptides/isolation & purification , Oligopeptides/pharmacology , Oxazoles/isolation & purification , Oxazoles/pharmacology , Peptides/pharmacology , Phenols/chemistry , Phenols/pharmacology , Streptomyces/chemistry , Anti-Bacterial Agents/chemistry , Antifungal Agents/chemistry , Appalachian Region , Coal , Ethers/isolation & purification , Humans , Molecular Structure , Neuroprotective Agents/chemistry , Nuclear Magnetic Resonance, Biomolecular , Oligopeptides/chemistry , Oxazoles/chemistry , Peptides/chemistry , Phenols/isolation & purification
14.
J Nat Prod ; 80(1): 12-18, 2017 01 27.
Article in English | MEDLINE | ID: mdl-28029796

ABSTRACT

The assessment of glycosyl-scanning to expand the molecular and functional diversity of metabolites from the underground coal mine fire-associated Streptomyces sp. RM-14-6 is reported. Using the engineered glycosyltransferase OleD Loki and a 2-chloro-4-nitrophenylglycoside-based screen, six metabolites were identified as substrates of OleD Loki, from which 12 corresponding metabolite glycosides were produced and characterized. This study highlights the first application of the 2-chloro-4-nitrophenylglycoside-based screen toward an unbiased set of unique microbial natural products and the first reported application of the 2-chloro-4-nitrophenylglycoside-based transglycosylation reaction for the corresponding preparative synthesis of target glycosides. Bioactivity analysis (including antibacterial, antifungal, anticancer, and EtOH damage neuroprotection assays) revealed glycosylation to attenuate the neuroprotective potency of 4, while glycosylation of the structurally related inactive spoxazomicin C (3) remarkably invoked neuroprotective activity.


Subject(s)
Antifungal Agents/isolation & purification , Antifungal Agents/pharmacology , Glycosides/chemistry , Neuroprotective Agents/isolation & purification , Neuroprotective Agents/pharmacology , Oligopeptides/isolation & purification , Oligopeptides/pharmacology , Oxazoles/isolation & purification , Oxazoles/pharmacology , Streptomyces/chemistry , Antifungal Agents/chemistry , Glycosylation , Molecular Structure , Neuroprotective Agents/chemistry , Oligopeptides/chemistry , Oxazoles/chemistry
15.
J Nat Prod ; 79(10): 2731-2739, 2016 10 28.
Article in English | MEDLINE | ID: mdl-27736087

ABSTRACT

Four new Y-type actinomycin analogues named Y6-Y9 (1-4) were isolated and characterized from the scale-up fermentation of the Streptomyces sp. strain Gö-GS12, as well as actinomycin Zp (5), which was, for the first time, isolated as a natural product. Structures of the new compounds were elucidated by the cumulative analyses of NMR spectroscopy and HRMS. The 4-hydroxythreonine on the ß-ring of 1 uniquely undergoes both a rearrangement by a 2-fold acyl shift and an additional ring closure with the amino group of the phenoxazinone chromophore, and the α-rings of 4 and 5 contain a rare 5-methyl proline. Compounds 2-5 showed potent antibacterial activities against Gram-positive bacteria that correlated with cytotoxicity against representative human cell lines. The combination of a ß-ring rearrangement and additional ring closure in 1 rendered this actinomycin significantly less potent relative to the nonrearranged comparator actinomycin Y5 and other actinomycins.


Subject(s)
Anti-Bacterial Agents , Dactinomycin , Streptomyces/chemistry , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/isolation & purification , Anti-Bacterial Agents/pharmacology , Cell Survival , Dactinomycin/analogs & derivatives , Dactinomycin/chemistry , Dactinomycin/isolation & purification , Dactinomycin/pharmacology , Fermentation , Humans , Molecular Structure , Nuclear Magnetic Resonance, Biomolecular , Proline/chemistry , Threonine/analogs & derivatives , Threonine/chemistry
17.
J Nat Prod ; 78(7): 1723-9, 2015 Jul 24.
Article in English | MEDLINE | ID: mdl-26091285

ABSTRACT

Actinomadura melliaura ATCC 39691, a strain isolated from a soil sample collected in Bristol Cove, California, is a known producer of the disaccharide-substituted AT2433 indolocarbazoles (6-9). Reinvestigation of this strain using new media conditions led to >40-fold improvement in the production of previously reported AT2433 metabolites and the isolation and structure elucidation of the four new analogues, AT2433-A3, A4, A5, and B3 (1-4). The availability of this broader set of compounds enabled a subsequent small antibacterial/fungal/cancer SAR study that revealed disaccharyl substitution, N-6 methylation, and C-11 chlorination as key modulators of bioactivity. The slightly improved anticancer potency of the newly reported N-6-desmethyl 1 (compared to 6) contrasts extensive SAR of monoglycosylated rebeccamycin-type topoisomerase I inhibitors where N-6 alkylation has contributed to improved potency and ADME. Complete 2D NMR assignments for the known metabolite BMY-41219 (5) and (13)C NMR spectroscopic data for the known analogue AT2433-B1 (7) are also provided for the first time.


Subject(s)
Actinomycetales/chemistry , Antibiotics, Antineoplastic/isolation & purification , Carbazoles/isolation & purification , Carbazoles/pharmacology , Indole Alkaloids/isolation & purification , Indole Alkaloids/pharmacology , Topoisomerase I Inhibitors/isolation & purification , Topoisomerase I Inhibitors/pharmacology , Antibiotics, Antineoplastic/chemistry , Antibiotics, Antineoplastic/pharmacology , California , Carbazoles/chemistry , Humans , Indole Alkaloids/chemistry , Microbial Sensitivity Tests , Micrococcus luteus/drug effects , Molecular Structure , Mycobacterium smegmatis/drug effects , Nuclear Magnetic Resonance, Biomolecular , Saccharomyces cerevisiae/drug effects , Soil Microbiology , Staphylococcus aureus/drug effects , Topoisomerase I Inhibitors/chemistry
18.
Org Lett ; 17(11): 2796-9, 2015 Jun 05.
Article in English | MEDLINE | ID: mdl-25961722

ABSTRACT

Terfestatins B (1) and C (2), new p-terphenyls bearing a novel unsaturated hexuronic acid (4-deoxy-α-L-threo-hex-4-enopyranuronate), a unique ß-D-glycosyl ester of 5-isoprenylindole-3-carboxylate (3) and the same rare sugar, and two new hygromycin precursors, were characterized as metabolites of the coal mine fire isolate Streptomyces sp. RM-5-8. EtOH damage neuroprotection assays using rat hippocampal-derived primary cell cultures with 1, 2, 3 and echoside B (a terfestatin C-3'-ß-D-glucuronide from Streptomyces sp. RM-5-8) revealed 1 as potently neuroprotective, highlighting a new potential application of the terfestatin scaffold.


Subject(s)
Glucosides/chemistry , Glucuronides/chemistry , Glycosides/chemistry , Hexuronic Acids/chemistry , Streptomyces/chemistry , Terphenyl Compounds/chemistry , Animals , Molecular Structure , Rats
19.
Chem Soc Rev ; 44(21): 7591-697, 2015 Nov 07.
Article in English | MEDLINE | ID: mdl-25735878

ABSTRACT

A systematic analysis of all naturally-occurring glycosylated bacterial secondary metabolites reported in the scientific literature up through early 2013 is presented. This comprehensive analysis of 15 940 bacterial natural products revealed 3426 glycosides containing 344 distinct appended carbohydrates and highlights a range of unique opportunities for future biosynthetic study and glycodiversification efforts.


Subject(s)
Bacteria/chemistry , Biological Products/chemistry , Aminoglycosides/chemistry , Bacteria/metabolism , Glycosylation , Macrolides/chemistry , Molecular Structure
20.
ACS Chem Biol ; 9(10): 2347-58, 2014 Oct 17.
Article in English | MEDLINE | ID: mdl-25079510

ABSTRACT

Calicheamicin γ1I (1) is an enediyne antitumor compound produced by Micromonospora echinospora spp. calichensis, and its biosynthetic gene cluster has been previously reported. Despite extensive analysis and biochemical study, several genes in the biosynthetic gene cluster of 1 remain functionally unassigned. Using a structural genomics approach and biochemical characterization, two proteins encoded by genes from the 1 biosynthetic gene cluster assigned as "unknowns", CalU16 and CalU19, were characterized. Structure analysis revealed that they possess the STeroidogenic Acute Regulatory protein related lipid Transfer (START) domain known mainly to bind and transport lipids and previously identified as the structural signature of the enediyne self-resistance protein CalC. Subsequent study revealed calU16 and calU19 to confer resistance to 1, and reminiscent of the prototype CalC, both CalU16 and CalU19 were cleaved by 1 in vitro. Through site-directed mutagenesis and mass spectrometry, we identified the site of cleavage in each protein and characterized their function in conferring resistance against 1. This report emphasizes the importance of structural genomics as a powerful tool for the functional annotation of unknown proteins.


Subject(s)
Anti-Bacterial Agents/pharmacology , Bacterial Proteins/chemistry , Bacterial Proteins/metabolism , Drug Resistance, Bacterial/genetics , Enediynes/pharmacology , Micromonospora/metabolism , Bacterial Proteins/genetics , Crystallography, X-Ray , Genomics/methods , Lipids/chemistry , Micromonospora/growth & development , Models, Molecular , Molecular Structure , Multigene Family , Mutagenesis, Site-Directed , Mutation/genetics , Protein Structure, Tertiary , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
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