National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110067, India.
Nucleic Acids Res. 2017 Jul 3;45(W1):W72-W79. doi: 10.1093/nar/gkx344.
Genome guided discovery of novel natural products has been a promising approach for identification of new bioactive compounds. SBSPKS web-server has been a valuable resource for analysis of polyketide synthase (PKS) and non-ribosomal peptide synthetase (NRPS) gene clusters. We have developed an updated version - SBSPKSv2 which is based on comprehensive analysis of sequence, structure and secondary metabolite chemical structure data from 311 experimentally characterized PKS/NRPS gene clusters with known biosynthetic products. A completely new feature of SBSPKSv2 is the inclusion of features for search in chemical space. It allows the user to compare the chemical structure of a given secondary metabolite to the chemical structures of biosynthetic intermediates and final products. For identification of catalytic domains, SBSPKS now uses profile based searches, which are computationally faster and have high sensitivity. HMM profiles have also been added for a number of new domains and motif information has been used for distinguishing condensation (C), epimerization (E) and cyclization (Cy) domains of NRPS. In summary, the new and updated SBSPKSv2 is a versatile tool for genome mining and analysis of polyketide and non-ribosomal peptide biosynthetic pathways in chemical space. The server is available at: http://www.nii.ac.in/sbspks2.html.
基于基因组的天然产物发现一直是鉴定新生物活性化合物的一种很有前途的方法。SBSPKS 网络服务器是分析聚酮合酶 (PKS) 和非核糖体肽合成酶 (NRPS) 基因簇的有价值的资源。我们开发了一个更新的版本-SBSPKSv2,它是基于对 311 个具有已知生物合成产物的实验表征的 PKS/NRPS 基因簇的序列、结构和次生代谢物化学结构数据的综合分析。SBSPKSv2 的一个全新特点是包括在化学空间中搜索的功能。它允许用户将给定次生代谢物的化学结构与生物合成中间体和最终产物的化学结构进行比较。为了识别催化结构域,SBSPKS 现在使用基于轮廓的搜索,这种搜索方法计算速度更快,灵敏度更高。还添加了一些新的 HMM 轮廓,并使用基序信息来区分 NRPS 的缩合 (C)、差向异构化 (E) 和环化 (Cy) 结构域。总之,新的和更新的 SBSPKSv2 是在化学空间中进行基因组挖掘和分析聚酮和非核糖体肽生物合成途径的多功能工具。该服务器可在:http://www.nii.ac.in/sbspks2.html 访问。