1.Utilization of used fungus-growing materials of Gastrodia elata.
Jin-Qiang ZHANG ; Wei-Ke JIANG ; Lan-Ping GUO ; Zhen OUYANG ; Yuan WEI ; Jie YANG ; Cheng-Hong XIAO ; Jiao XU ; Guang-Wen ZHANG ; Tao ZHOU
China Journal of Chinese Materia Medica 2022;47(9):2309-2314
This study aims to explore the resource utilization of used fungus-growing materials produced in the cultivation of Gastrodia elata. To be specific, based on the production practice, this study investigated the recycling mechanism of used fungus-growing materials of G. elata by Phallus inpudicus. To screen edible fungi with wide adaptability, this study examined the allelopathic effects of Armillaria mellea secretions on P. impudicus and 6 kinds of large edible fungi and the activities of enzymes related to degradation of the used fungus-growing materials of G. elata. The results showed that P. impudicus can effectively degrade cellulose, hemicellulose, and lignin in used fungus-growing materials of G. elata. The cellulase activity of A. mellea was significantly higher than that of P. impudicus, and the activities of lignin peroxidase, polyphenol oxidase, and xylanase of P. impudicus were significantly higher than those of A. mellea, which was the important reason why A. mellea and P. impudicus used different parts and components of the used fungus-growing materials to absorb carbon sources and develop ecological niche differences. The growth of P. impudicus was significantly inhibited on the used fungus-growing materials of G. elata. The secretions of A. mellea had allelopathic effects on P. impudicus and other edible fungi, and the allelopathic effects were related to the concentration of allelopathy substances. The screening result showed that the growth and development of L. edodes and A. auricular were not significantly affected by 30% of A. mellea liquid, indicating that they had high resistance to the allelopathy of A. mellea. The results showed that the activities of extracellular lignin peroxidase, polyphenol oxidase, and xylanase of the two edible fungi were similar to those of P. impudicus, and the cellulase activity was higher than that of P. impudicus. This experiment can be further verified by small-scale production tests.
Agaricales
;
Ascomycota
;
Basidiomycota
;
Catechol Oxidase
;
Cellulases
;
Gastrodia
2.Genetic testing and prenatal diagnosis for thirteen Chinese pedigrees affected with oculocutaneous albinism.
Yujiao YANG ; Bin MAO ; Qiong WANG ; Shubing LIE ; Ruixuan ZHANG ; Xiuli ZHAO
Chinese Journal of Medical Genetics 2022;39(2):143-147
OBJECTIVE:
To identify the causative variants in 13 Chinese pedigrees affected with oculocutaneous albinism (OCA) so as to provide genetic counseling and prenatal diagnosis to them.
METHODS:
Thirteen unrelated pedigrees with clinically diagnosed OCA were collected and classified based on the manifestation of skin and eyes. With informed consent obtained from the participants, peripheral blood samples were collected from the probands and their family members for the extraction of genomic DNA. Candidate variants were screened by targeted capture and next generation sequencing, and the results were validated by Sanger sequencing. Prenatal diagnosis was provided to the families upon their subsequent pregnancies.
RESULTS:
Causative variants were detected in all probands, including 10 with compound heterozygotes or homozygotes for TYR gene variants and 3 with compound heterozygotes for OCA2 gene variants. Among these, two variants [TYR: c.650G>C (p.Arg217Pro) and OCA2: c.516-2A>T] were unreported previously. The pathogenicity of the novel TYR: c.650G>C (p.Arg217Pro) variant was verified through bioinformatic analysis and prediction of three dimensional structure of the protein. Prenatal diagnosis was provided to 6 fetuses with a high risk for OCA. Four fetuses were found to be carriers, one did not carry the variants of the proband, and one was affected with OCA.
CONCLUSION
Identification of the pathogenic variants in the 13 probands, including 2 novel ones, has expanded the mutational spectrum of OCA and enabled genetic counseling and prenatal diagnosis for the families.
Albinism, Oculocutaneous/genetics*
;
China
;
Female
;
Genetic Testing
;
Humans
;
Membrane Transport Proteins/genetics*
;
Monophenol Monooxygenase/genetics*
;
Mutation
;
Pedigree
;
Pregnancy
;
Prenatal Diagnosis
3.A new isoflavone from Dalbergia odorifera and inhibitory activity of its tyrosinase.
Suet CHEUNG ; Wan FANG ; Xiao-Qing LI ; Rui WANG ; Shi-Kai YAN ; Hui-Zi JIN
China Journal of Chinese Materia Medica 2022;47(18):4959-4965
Twelve flavonoids were isolated and purified from the ethyl acetate fraction of 95% ethanol extract of Dalbergia odorifera by heat reflux extraction, solvent extraction, recrystallization, normal phase silica gel, Sephadex LH-20, MCI gel and HPLC methods. The structures were identified with multiple spectroscopic methods, including 1 D-NMR, 2 D-NMR and MS. The compounds were identified as 6,7,8-trimethoxy-5,4'-dihydroxy isoflavone(1), medicarpin(2), 7,2'-dihydroxy-4'-methoxy-isoflavanol(3), biochanin A(4), prunetin(5), genistein(6), pratensein(7), 3-(4-hydroxyphenyl)-6-isopentenyl-7-methoxy-4H-chromen-4-one(8), tectorigenin(9), irisolidone(10), vestitol(11), and formononetin(12). Compound 1 was a new isoflavone, and compound 8 was isolated from D. odorifera for the first time. The results showed that compounds 1-3 had inhibitory effects on tyrosinase, with inhibition rates of 35.58%, 38.63% and 51.34% at the concentration of 1.0 mmol·L~(-1), respectively.
Dalbergia/chemistry*
;
Ethanol
;
Flavonoids/chemistry*
;
Genistein
;
Isoflavones/pharmacology*
;
Monophenol Monooxygenase
;
Plant Extracts/pharmacology*
;
Silica Gel
;
Solvents
4.Content determination of phenolic acids in fresh Salvia miltiorrhiza and effect of polyphenol oxidase on content.
Xu CHEN ; Tao ZHOU ; Zhi-Fang HUANG ; Yan CHEN ; Yu-Hong LIU ; Yun-Hua LIU ; Jin-Hai YI
China Journal of Chinese Materia Medica 2021;46(5):1148-1154
There is no consensus on the content, accumulation, transformation and content determination methods of phenolic acids in fresh Salvia miltiorrhiza. In order to find out the true content of phenolic acids in fresh S. miltiorrhiza, a variety of treatment me-thods were used in this study to prepare sample solution. The content changes of phenolic acids in S. miltiorrhiza samples with different dehydration rates were investigated during drying and shade drying processes. Polyphenol oxidase(PPO) of S. miltiorrhiza was extracted and purified by ammonium sulfate precipitation and dialysis to investigate the enzymatic properties. The content of rosmarinic acid, lithosperic acid and S. nolic acid B in S. miltiorrhiza was determined by UPLC. The results showed that the content of phenolic acids in fresh S. miltiorrhiza was highest when it was homogenized with 1 mol·L~(-1) HCl solution or 1 mol·L~(-1) HCl methanol solution. There was no significant difference in the content of phenolic acids in S. miltiorrhiza with different dehydration rates, indicating that there was no correlation between phenolic acid content and dehydration rate. The optimum pH of S. miltiorrhiza PPO was 7.6 and the optimum temperature was 40 ℃. With catechol as substrate, S. miltiorrhiza PPO had the enzymatic browning reaction which was in compliance with Michaelis equation, with Michaelis constant K_m of 0.12 mol·L~(-1) and V_(max) of 588.23 U·min~(-1). The inhibitory effect of citric acid, disodium ethylenediamine tetraacetate, ascorbic acid and sodium sulfite on S. miltiorrhiza PPO increased with the increase of inhibitor concentration, and sodium sulfite showed the strongest inhibitory effect. The present study proved that there were a large number of phenolic acids in fresh S. miltiorrhiza, which were the secondary metabolite of primitive accumulation during the growth of S. miltiorrhiza, rather than the induced product of postharvest drying and dehydration stress. This study has reference value and significance for the cultivation, harvest and processing of S. miltiorrhiza.
Catechol Oxidase
;
Desiccation
;
Hydroxybenzoates
;
Plant Roots
;
Salvia miltiorrhiza
5.Rapid discovery of tyrosinase inhibitors from Sophora flavescens:significance for comprehensive utilization of its non-medicinal resources.
Pan TIAN ; Zhong-Yuan GUO ; Yun-Ge FANG ; Ya-Fei MIAO ; Liang-Mian CHEN ; Xiao-Qian LIU ; Chen-Xiao-Ning MENG ; Hui-Min GAO ; Zhi-Min WANG
China Journal of Chinese Materia Medica 2021;46(12):2889-2899
Sophorae Flavescentis Radix,derived from the root of Sophora flavescens in the Leguminosae family,has been widely used in the medicine,agriculture,animal husbandry,and daily chemical industry. A pharmacophore model-based method for rapid discovery of tyrosinase inhibitors( TIs) from S. flavescens was established by molecular docking under Lipinski rules,and verified by enzyme assays. Briefly,the chemical constituent database of S. flavescens( CDSF) was established based on the previous papers. Theoptimal pharmacophore model( OPM) was constructed by DS 2019 on the basis of known active TIs. Eighty-three hits predominated by flavonoids having higher fitting scores with OPM than the positive control were screened out,and subjected to molecular docking based on the three-dimensional structure of tyrosinase crystal protein. The potential TIs such as kurarinone and nor-kurarinone were rapidly discovered from the compounds with higher docking scores than the positive control under the Lipinski rules. The results were verified by the in vitro enzyme assays. The inhibition activities of tyrosinase from non-medicinal parts of S. flavescens were also tested to explore the relationship between the inhibition activity and chemical compositions. This study is expected to provide data support for the comprehensive application and development of S. flavescens and also a new method for the rapid discovery of active substances or functional constituents in the complex systems.
Animals
;
Flavonoids
;
Molecular Docking Simulation
;
Monophenol Monooxygenase
;
Plant Extracts/pharmacology*
;
Plant Roots
;
Sophora
6.Recombinant expression of black sesame polyphenol oxidase and its enzymatic properties.
Caiyan YE ; Guang LIU ; Nian DU ; Ruifen ZHANG ; Lei LIU ; Xuchao JIA ; Mingwei ZHANG
Chinese Journal of Biotechnology 2021;37(12):4395-4405
To investigate the enzyme properties of the black sesame polyphenol oxidase (BsPPO), a synthesized Bsppo gene was cloned into the vector pMAL-c5x and expressed in E. coli. Subsequently, the MBP fusion label in the recombinant protein was removed by protease digestion after affinity purification. The synthesized Bsppo gene contained 1 752 bp which encodes 585 amino acids with a deduced molecular weight of 65.3 kDa. Transformation of the recombinant vector into E. coli BL21(DE3) resulted in soluble expression of the fusion protein MBP-BsPPO. The enzymatic properties of the recombinant BsPPO was investigated after MBP fusion tag excision followed by affinity purification. The results demonstrated that the optimal temperature and pH for BsPPO was 25°C and 4.0, respectively. BsPPO exhibited a good stability under low temperature and acidic environment. Low-intensity short-term light exposure increased the activity of BsPPO. Cu²⁺ could improve the activity of BsPPO while Zn²⁺ and Ca²⁺ showed the opposite effect. BsPPO could catalyze the oxidation of monophenols, diphenols, and triphenols, and exhibited good catalytic activity on l-tyrosine and vanillic acid. Moreover, BsPPO exhibited high catalytic activity on black sesame metabolites, including 2-methoxy cinnamic acid, indole-3-carboxylic acid and phloretin. These results may serve as a basis for further characterization of BsPPO.
Catechol Oxidase/genetics*
;
Cloning, Molecular
;
Escherichia coli/metabolism*
;
Recombinant Proteins/genetics*
;
Sesamum/genetics*
7.Source, metabolism and function of dopamine in digestive tract.
Acta Physiologica Sinica 2020;72(3):336-346
Dopamine (DA), as a catecholamine neurotransmitter widely distributed in the central nervous system and the peripheral tissues, has attracted a lot of attention. Especially in recent years, DA has been found to regulate the function of the immune system, and the involvement of DA in the intestinal mucosal inflammation-related diseases has become a hot research topic. The digestive tract is an important source of peripheral DA, and DA is not only produced in the enteric nervous system and gastrointestinal epithelium, but also produced by intestinal microorganisms. In addition to the synthetases of DA, the DA contents in body tissues are also affected by the two kinds of metabolic enzymes, monoamine oxidase (MAO) and catechol-O-methyltransferase (COMT). This article reviewed the sources, metabolism, and functions of DA in digestive tract, especially focusing on the distribution and function of MAO and COMT, the enzymes degrading DA.
Catechol O-Methyltransferase
;
Catechol O-Methyltransferase Inhibitors
;
Dopamine
;
Gastrointestinal Tract
;
Monoamine Oxidase
;
Monoamine Oxidase Inhibitors
8.Chronic stress induces fur color change from dark to brown by decreasing follicle melanocytes and tyrosinase activity in female C57BL/6 mice.
Xiao-Liang SHEN ; Yun-Zi LIU ; Hong GONG ; Yi ZHANG ; Teng-Yun WU ; Min XIA ; Chun-Lei JIANG
Acta Physiologica Sinica 2020;72(2):139-147
Increasing evidence suggests that stress may induce changes in hair color, with the underlying mechanism incompletely understood. In this study, female C57BL/6 mice subjected to electric foot shock combined with restraint stress were used to build chronic stress mouse model. The melanin contents and tyrosinase activity were measured in mouse skin and B16F10 melanoma cells. The enzyme-linked immunosorbent assay (ELISA) was used to determine the content of tumor necrosis factor α (TNF-α), interleukin- 1β (IL-1β) and interleukin-6 (IL-6) in the mouse skin. The content of nuclear factor κB (NFκB)/p65 subunit in mouse skins was valued by immunofluorescence staining. The results demonstrated that under chronic stress, the fur color turned from dark to brown in C57BL/6 mice due to the decrease of follicle melanocytes and tyrosinase activity in C57BL/6 mouse skin. Simultaneously, inflammatory responses in skins were detected as shown by increased NFκB activity and TNF-α expression in stressed mouse skin. In cultured B16F10 melanoma cells, TNF-α reduced the melanogenesis and tyrosinase activity in a dose-dependent manner. These findings indicate that chronic stress induces fur color change by decreasing follicle melanocytes and tyrosinase activity in female C57BL/6 mice, and TNF-α may play an important role in stress-induced hair color change.
Animal Fur
;
Animals
;
Color
;
Female
;
Melanins
;
Melanocytes
;
enzymology
;
Melanoma, Experimental
;
Mice
;
Mice, Inbred C57BL
;
Monophenol Monooxygenase
;
metabolism
;
Pigmentation
;
Skin
;
physiopathology
;
Stress, Physiological
9.Melanin synthesis and regulation in vivo and commonly used melanin inhibitors from natural products and traditional Chinese medicine.
China Journal of Chinese Materia Medica 2020;45(24):5898-5916
Melanin is an important factor affecting human skin color. This study defines its synthetic pathways and regulatory pathways have the practical significance for the treatment of diseases caused by pigmentation problems, such as chloasma. Besides, it also provides a theoretical basis for screening out melanin inhibitors and developing whitening and freckle products. At present, the melanin inhibitors used in whitening and freckle products mainly come from natural products and traditional Chinese medicine. This article first introduces the melanin biosynthesis pathway with tyrosinase as the core, defines the synthesis, transport and catalytic activity of tyrosinase as the three key factors affecting melanin synthesis, and then reviews two common types of melanin inhibitors, namely tyrosinase synthesis inhibitors and tyrosinase inhibitors derived from natural products and traditional Chinese medicine. This article provides guidance for the development of new melanin inhibitors, and puts forward the idea for combining and synergizing inhibitors according to different mechanisms, in order to develop new whitening formulas.
Biological Products
;
Enzyme Inhibitors
;
Humans
;
Medicine, Chinese Traditional
;
Melanins
;
Monophenol Monooxygenase
10.Screening and verification of proteins of Salvia miltiorrhiza polyphenol oxidase interaction.
Hai-Xing ZHANG ; Wang-Ke SHI ; Rong GUO ; Yue-Jin ZHANG ; Hong-Bo GUO
China Journal of Chinese Materia Medica 2020;45(11):2523-2532
Polyphenol oxidase(PPO) is an important antioxidant enzyme in plants. It has the functions of scavenging active oxygen and synthesizing phenols, lignin, and plant protection factors, and can enhance the plant's resistance to stress and resistance to pests and diseases. Our previous research found that Salvia miltiorrhiza PPO gene can positively regulate salvianolic acid B synthesis. In order to further explore the mechanism, a pGBKT7-PPO bait vector was constructed using the cloned S. miltiorrhiza polyphenol oxidase gene(SmPPO, GenBank accession number: KF712274.1), and verified that it had no self-activation and no toxicity. The titer of S. miltiorrhiza cDNA library constructed by our laboratory was 4.75 × 107 cfu·mL~(-1), which met the requirements for library construction. Through yeast two-hybrid test, 22 proteins that could interact with SmPPO were screened. Only yeast PAL1 and TAT interacted with SmPPO through yeast co-transformation verification. Further verification was performed by bimolecular fluorescence complementary detection(BiFC). Only TAT and SmPPO interacted, so it meant that TAT and SmPPO interacted. TAT and SmPPO were truncated according to the domain, respectively. The first 126 amino acids of SmPPO and tyrosine amino transferase(TAT) were obtained to interact on the cell membrane and chloroplast. SmPPO was obtained by subcellular localization test, which was mainly loca-lized on the nucleus and cell membrane; TAT was localized on the cell membrane. Real-time quantitative PCR results showed that the SmPPO gene was mainly expressed in roots and stems; the TAT gene was expressed in roots, and the expression level in stems and flowers was low. This article lays a solid foundation for the in-depth study of the molecular mechanism of the interaction of S. miltiorrhiza SmPPO and TAT to regulate the synthesis of phenolic substances.
Catechol Oxidase
;
Gene Expression Regulation, Plant
;
Gene Library
;
Plant Proteins
;
genetics
;
Plant Roots
;
Salvia miltiorrhiza
;
genetics

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