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1
Unraveling polyketide synthesis in members of the genus Aspergillus.解析曲霉属成员中的聚酮化合物合成。
Appl Microbiol Biotechnol. 2010 May;86(6):1719-36. doi: 10.1007/s00253-010-2525-3. Epub 2010 Apr 2.
2
Epigenome manipulation as a pathway to new natural product scaffolds and their congeners.表观基因组操作作为一种获得新天然产物支架及其同系物的途径。
Nat Prod Rep. 2010 Jan;27(1):11-22. doi: 10.1039/b920860g. Epub 2009 Oct 27.
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Unlocking fungal cryptic natural products.解锁真菌隐秘天然产物。
Nat Prod Commun. 2009 Nov;4(11):1505-10.
4
Review of secondary metabolites and mycotoxins from the Aspergillus niger group.黑曲霉属中次级代谢产物和真菌毒素的综述。
Anal Bioanal Chem. 2009 Nov;395(5):1225-42. doi: 10.1007/s00216-009-3081-5. Epub 2009 Sep 16.
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Triggering cryptic natural product biosynthesis in microorganisms.触发微生物中隐秘天然产物的生物合成
Org Biomol Chem. 2009 May 7;7(9):1753-60. doi: 10.1039/b821578b. Epub 2009 Mar 6.
6
Chemical induction of silent biosynthetic pathway transcription in Aspergillus niger.黑曲霉中沉默生物合成途径转录的化学诱导
J Ind Microbiol Biotechnol. 2009 Sep;36(9):1199-213. doi: 10.1007/s10295-009-0601-4. Epub 2009 Jun 12.
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Chromatin-level regulation of biosynthetic gene clusters.生物合成基因簇的染色质水平调控
Nat Chem Biol. 2009 Jul;5(7):462-4. doi: 10.1038/nchembio.177.
8
A gene cluster containing two fungal polyketide synthases encodes the biosynthetic pathway for a polyketide, asperfuranone, in Aspergillus nidulans.一个包含两个真菌聚酮合酶的基因簇编码了 Aspergillus nidulans 中多酮类化合物 Asperfuranone 的生物合成途径。
J Am Chem Soc. 2009 Mar 4;131(8):2965-70. doi: 10.1021/ja8088185.
9
A chemical epigenetics approach for engineering the in situ biosynthesis of a cryptic natural product from Aspergillus niger.一种用于工程化黑曲霉中一种隐秘天然产物原位生物合成的化学表观遗传学方法。
Org Biomol Chem. 2009 Feb 7;7(3):435-8. doi: 10.1039/b819208a. Epub 2008 Dec 11.
10
Pestalazines and pestalamides, bioactive metabolites from the plant pathogenic fungus Pestalotiopsis theae.来自植物病原菌 Pestalotiopsis theae 的生物活性代谢产物——杯伞素和杯伞酰胺。
J Nat Prod. 2008 Nov;71(11):1861-5. doi: 10.1021/np800357g. Epub 2008 Oct 15.

黑曲霉中一种聚酮合酶的特性研究,其产物是二羟基萘(DHN)黑色素和萘并-γ-吡喃酮的前体。

Characterization of a polyketide synthase in Aspergillus niger whose product is a precursor for both dihydroxynaphthalene (DHN) melanin and naphtho-γ-pyrone.

机构信息

Graduate Institute of Pharmaceutical Science, Chia Nan University of Pharmacy and Science, Tainan 71710, Taiwan, ROC.

出版信息

Fungal Genet Biol. 2011 Apr;48(4):430-7. doi: 10.1016/j.fgb.2010.12.001. Epub 2010 Dec 19.

DOI:10.1016/j.fgb.2010.12.001
PMID:21176790
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3118676/
Abstract

The genome sequencing of the fungus Aspergillus niger uncovered a large cache of genes encoding enzymes thought to be involved in the production of secondary metabolites yet to be identified. Identification and structural characterization of many of these predicted secondary metabolites are hampered by their low concentration relative to the known A. niger metabolites such as the naphtho-γ-pyrone family of polyketides. We deleted a non-reducing PKS gene in A. niger strain ATCC 11414, a daughter strain of A. niger ATCC strain 1015 whose genome was sequenced by the DOE Joint Genome Institute. This PKS encoding gene we name albA is a predicted ortholog of alb1 from Aspergillus fumigatus which is responsible for production of the naphtho-γ-pyrone precursor for the 1,8-dihydroxynaphthalene (DHN) melanin/spore pigment. Our results show that the A. nigeralbA PKS is responsible for both the production of the spore pigment precursor and a family of naphtho-γ-pyrones commonly found in significant quantity in A. niger culture extracts. The generation of an A. niger strain devoid of naphtho-γ-pyrones will greatly facilitate the elucidation of cryptic biosynthetic pathways in this organism.

摘要

黑曲霉基因组测序揭示了大量编码酶的基因,这些酶被认为参与了尚未确定的次生代谢产物的产生。由于这些预测的次生代谢产物的浓度相对较低,与已知的黑曲霉代谢产物(如萘醌-γ-吡喃酮家族的聚酮化合物)相比,它们的鉴定和结构特征受到了阻碍。我们删除了黑曲霉菌株 ATCC 11414 中的一个非还原型 PKS 基因,该菌株是黑曲霉 ATCC 菌株 1015 的一个子株,其基因组由 DOE 联合基因组研究所测序。我们将这个编码 PKS 的基因命名为 albA,它是烟曲霉 alb1 的预测直系同源物,后者负责生产 1,8-二羟基萘(DHN)黑色素/孢子色素的萘醌-γ-吡喃酮前体。我们的结果表明,黑曲霉 albA PKS 不仅负责产生孢子色素前体,还负责产生一组在黑曲霉培养物提取物中大量存在的萘醌-γ-吡喃酮。生成一种不含萘醌-γ-吡喃酮的黑曲霉菌株将极大地促进该生物中隐匿生物合成途径的阐明。