Sheng-Ying Qin
Jinan University
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Publication
Featured researches published by Sheng-Ying Qin.
Organic Letters | 2017
Huan Zhao; Guo-Dong Chen; Jian Zou; Rong-Rong He; Sheng-Ying Qin; Dan Hu; Guo-Qiang Li; Liang-Dong Guo; Xin-Sheng Yao; Hao Gao
Dimericbiscognienyne A (1), an unusual diisoprenyl-cyclohexene-type meroterpenoid dimer, was isolated from Biscogniauxia sp. together with three new monomeric diisoprenyl-cyclohexene-type meroterpenoids (2-4) and one new isoprenyl-benzoic acid-type meroterpenoid (5). All structures were determined by extensive NMR spectroscopic methods, quantum chemical calculations, chemical derivatization, and X-ray crystallography. The formation of 1 is related to a unique intermolecular redox coupling Diels-Alder adduct reaction. Their cytotoxicities and short-term memory enhancement activities against Alzheimers disease were assessed.
Molecules | 2016
Tian-Yu Sun; Run-Qiao Kuang; Guo-Dong Chen; Sheng-Ying Qin; Chuan-Xi Wang; Dan Hu; Bing Wu; Xingzhong Liu; Xin-Sheng Yao; Hao Gao
Three pairs of new isopentenyl dibenzo[b,e]oxepinone enantiomers, (+)-(5S)-arugosin K (1a), (−)-(5R)-arugosin K (1b), (+)-(5S)-arugosin L (2a), (−)-(5R)-arugosin L (2b), (+)-(5S)-arugosin M (3a), (−)-(5R)-arugosin M (3b), and a new isopentenyl dibenzo[b,e]oxepinone, arugosin N (4), were isolated from a wetland soil-derived fungus Talaromyces flavus, along with two known biosynthetically-related compounds 5 and 6. Among them, arugosin N (4) and 1,6,10-trihydroxy-8-methyl-2-(3-methyl-2-butenyl)-dibenz[b,e]oxepin-11(6H)-one (CAS: 160585-91-1, 5) were obtained as the tautomeric mixtures. The structures of isolated compounds were determined by detailed spectroscopic analysis. In addition, the absolute configurations of these three pairs of new enantiomers were determined by quantum chemical ECD calculations.
Nature Communications | 2018
Gao-Qian Wang; Guo-Dong Chen; Sheng-Ying Qin; Dan Hu; Takayoshi Awakawa; Shao-Yang Li; Jian-Ming Lv; Chuan-Xi Wang; Xin-Sheng Yao; Ikuro Abe; Hao Gao
Furanosteroids, represented by wortmannin, viridin, and demethoxyviridin, are a special group of fungal-derived, highly oxygenated steroids featured by an extra furan ring. They are well-known nanomolar-potency inhibitors of phosphatidylinositol 3-kinase and widely used in biological studies. Despite their importance, the biosyntheses of these molecules are poorly understood. Here, we report the identification of the biosynthetic gene cluster for demethoxyviridin, consisting of 19 genes, and among them 15 biosynthetic genes, including six cytochrome P450 monooxygenase genes, are deleted. As a result, 14 biosynthetic intermediates are isolated, and the biosynthetic pathway for demethoxyviridin is elucidated. Notably, the pregnane side-chain cleavage requires three enzymes: flavin-dependent Baeyer-Villiger monooxygenase, esterase, and dehydrogenase, in sharp contrast to the single cytochrome P450-mediated process in mammalian cells. Structure–activity analyses of these obtained biosynthetic intermediates reveal that the 3-keto group, the C1β–OH, and the aromatic ring C are important for the inhibition of phosphatidylinositol 3-kinase.Demethoxyviridin is a fungal steroid that inhibits a phosphatidylinositol 3-kinase, an enzyme contributing to tumor progression. Here, the authors elucidate the biosynthetic route that leads to the formation of demethoxyviridin in fungi.
Glycobiology | 2018
Qin-Peng Yang; Ming-Fen Fu; Hao Gao; Kazuo Yamamoto; Dan Hu; Sheng-Ying Qin
Malectin is a newly discovered endoplasmic reticulum (ER)-resident lectin, which specifically recognizes Glc2Man9GlcNAc2 on newly synthesized glycoproteins. We have previously demonstrated that malectin forms a complex with ribophorin I for selective retention of misfolded glycoproteins inside the cell. Here, we showed that ribophorin I also functions to regulate the subcellular localization of malectin under various conditions. Even though malectin does not contain an ER-retention signal motif, we found that endogenous malectin mainly localizes in the ER, which is disrupted upon suppression of ribophorin I, leading to its movement from ER to Golgi. In contrast, under ER-stress conditions, malectin mainly localizes in the Golgi, which is restored to ER localization by overexpression of ribophorin I. These results indicate that the subcellular localization of malectin is accurately regulated by the expression level of ribophorin I, which will provide further insights into the understanding of the function of malectin.
Fitoterapia | 2018
Heng-Gang Yang; Jiao-Jiao Li; Shao-Meng Chen; Lang-Ming Mou; Jian Zou; Chuan-Xi Wang; Guo-Dong Chen; Sheng-Ying Qin; Xin-Sheng Yao; Hao Gao
Four new phenylisotertronic acids (1a/1b, 2a, and 3a) were isolated from a TCM endophytic fungal strain Phyllosticta sp. J13-2-12Y obtained from the leaves of Acorus tatarinowii, along with two known ones (2b and 3b). Compounds 1-3 all existed as mixtures of enantiomers, and their corresponding optically pure enantiomers were successfully isolated by chiral HPLC. The structures of isolated compounds were determined by comprehensive spectroscopic analyses and X-ray diffraction. Their absolute configurations were determined by ECD experiments and quantum chemical calculations. In addition, the antimicrobial activities and the cytotoxicities of these three pairs of optically pure enantiomers (1a/1b, 2a/2b, and 3a/3b) had been evaluated.
Scientific Reports | 2017
Heng-Gang Yang; Huan Zhao; Jiao-Jiao Li; Shao-Meng Chen; Lang-Ming Mou; Jian Zou; Guo-Dong Chen; Sheng-Ying Qin; Chuan-Xi Wang; Dan Hu; Xin-Sheng Yao; Hao Gao
Phyllomeroterpenoids A−C (1−3), multi-biosynthetic pathway derived meroterpenoids from amino acid/pentose phosphate/terpenoid pathways, were isolated from the TCM endophytic fungus Phyllosticta sp. J13-2-12Y, together with six biosynthetically related compounds (4−9). All structures were determined by extensive spectroscopic analysis, chemical derivatization, and ECD experiments. A plausible biosynthetic pathway of 1−3 was proposed. In addition, the antimicrobial activities of all isolated compounds were evaluated against Staphylococcus aureus 209P (bacterium) and Candida albicans FIM709 (fungus).
Chemical Communications | 2016
Chuan-Xi Wang; Guo-Dong Chen; Chun-Chi Feng; Rong-Rong He; Sheng-Ying Qin; Dan Hu; Heru Chen; Xingzhong Liu; Xin-Sheng Yao; Hao Gao
Tetrahedron | 2018
Xiang Li; Jia Tang; Guo-Dong Chen; Huiyun Huang; Huan Zhao; Wei Xu; Sheng-Ying Qin; Chuan-Xi Wang; Dan Hu; Xin-Sheng Yao; Hao Gao
Archive | 2017
Huan Zhao; Guo-Dong Chen; Jian Zou; Rong-Rong He; Sheng-Ying Qin; Dan Hu; Guo-Qiang Li; Liang-Dong Guo; Xin-Sheng Yao; Hao Gao
Archive | 2017
Huan Zhao; Guo-Dong Chen; Jian Zou; Rong-Rong He; Sheng-Ying Qin; Dan Hu; Guo-Qiang Li; Liang-Dong Guo; Xin-Sheng Yao; Hao Gao