• 제목/요약/키워드: C16 hydroxylation

검색결과 6건 처리시간 0.023초

Heterologous Expression of Rhizopus Oryzae CYP509C12 Gene in Rhizopus Nigricans Enhances Reactive Oxygen Species Production and 11α-Hydroxylation Rate of 16α, 17-Epoxyprogesterone

  • Shen, Chaohui;Gao, Xiyang;Li, Tao;Zhang, Jun;Gao, Yuqian;Qiu, Liyou;Zhang, Guang
    • Mycobiology
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    • 제47권3호
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    • pp.301-307
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    • 2019
  • The $11{\alpha}$-hydroxylation of $16{\alpha}$, 17-epoxyprogesterone (EP) catalyzed by Rhizopus nigricans is crucial for the steroid industry. However, lower conversion rate of the biohydroxylation restricts its potential industrial application. The $11{\alpha}$-steroid hydroxylase CYP509C12 from R. oryzae were reported to play a crucial role in the $11{\alpha}$-hydroxylation in recombinant fission yeast. In the present study, the CYP509C12 of R. oryzae (RoCYP) was introduced into R. nigricans using the liposome-mediated mycelial transformation. Heterologous expression of RoCYP resulted in increased fungal growth and improved intracellular reactive oxygen species content in R. nigricans. The $H_2O_2$ levels in RoCYP transformants were approximately 2-folder that of the R. nigricans wild type (RnWT) strain, with the superoxide dismutase activities increased approximately 45% and catalase activities decreased approximately 68%. Furthermore, the $11{\alpha}$-hydroxylation rates of EP in RoCYP transformants (C4, C6 and C9) were 39.7%, 38.3% and 38.7%, which were 12.1%, 8.2% and 9.4% higher than the rate of the RnWT strain, respectively. This paper investigated the effect of heterologous expression of RoCYP in R. nigricans, providing an effective genetic method to construct the engineered strains for steroid industry.

Stevia rebaudiana Bertoni의 Steviol 생합성 효소 ent-Kaurenoic Acid 13-Hydroxylase의 특성 (Characterization of ent-Kaurenoic Acid 13-Hydroxylase in Steviol Biosynthesis of Stevia rebaudiana Bertoni)

  • ;김근기
    • Applied Biological Chemistry
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    • 제40권6호
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    • pp.501-507
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    • 1997
  • 파라과이 원산의 국화과 식물 Stevia rebaudiana Bertoni는 steviol (ent-13-hydroxy kaur-16-en-19-oic acid)을 기본 골격으로 하는 stevia 감미료를 건물 중량의 5-10%를 생합성하여 축적을 한다. 감미성분은 Gibberellin 생합성의 전구체로 알려진 ent-kaurenoic acid (ent-kaur-16-en-19-oic acid; ent-KA)의 7번과 13번의 어느 탄소에 hydroxylation을 시키느냐에 따라 gibberellin 대사와 steviol 대사로 나뉘어진다. ent-KA 13-hydroxylase를 stevia 엽록체의 stroma에 존재하는 것을 확인했다. Stroma 분획 단백질 $100\;{\mu}g$으로 효소 반응의 cofactor 요구성을 조사해 본 결과, 반응 혼합액에 NADPH를 첨가하지 않았을 때는 85%의 효소활성의 감소를 보였고, NADPH 대신 NADH를 첨가해도 34%의 감소를 보였다. anaerobic 조건에서는 2.1%의 활성을 뛰었다. 이 결과로 ent-KA 13-hydroxylase는 NADPH와 $O_2$ 요구성임을 밝혔다. FAD, FMN, riboflavin을 첨가함으로써 FAD는 1.5배, riboflavin은 1.7배의 효소활성 증가 효과가 나타났다. 효소의 기질 특이성을 조사한 결과, t-cinnamic acid, 4-hydroxyphenyl acetic acid, choline과 resorcinol에는 전혀 활성이 검출되지 않았으며, $[^(14)C]-methyl-KA$를 ent-KA 대신에 기질로 사용했을 때는 16.7% 의 활성이 검출되어 ent-KA 13-hydroxylase는 기질특이성이 높은것으로 확인되었다.

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Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species

  • Subedi, Pradeep;Kim, Ki-Hwa;Hong, Young-Soo;Lee, Joo-Ho;Oh, Tae-Jin
    • Journal of Microbiology and Biotechnology
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    • 제31권3호
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    • pp.464-474
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    • 2021
  • Bacterial cytochrome P450 (CYP) enzymes are responsible for the hydroxylation of diverse endogenous substances with a heme molecule used as a cofactor. This study characterized two CYP154C3 proteins from Streptomyces sp. W2061 (CYP154C3-1) and Streptomyces sp. KCCM40643 (CYP154C3-2). The enzymatic activity assays of both CYPs conducted using heterologous redox partners' putidaredoxin and putidaredoxin reductase showed substrate flexibility with different steroids and exhibited interesting product formation patterns. The enzymatic characterization revealed good activity over a pH range of 7.0 to 7.8 and the optimal temperature range for activity was 30 to 37℃. The major product was the C16-hydroxylated product and the kinetic profiles and patterns of the generated hydroxylated products differed between the two enzymes. Both enzymes showed a higher affinity toward progesterone, with CYP154C3-1 demonstrating slightly higher activity than CYP154C3-2 for most of the substrates. Oxidizing agents (diacetoxyiodo) benzene (PIDA) and hydrogen peroxide (H2O2) were also utilized to actively support the redox reactions, with optimum conversion achieved at concentrations of 3 mM and 65 mM, respectively. The oxidizing agents affected the product distribution, influencing the type and selectivity of the CYP-catalyzed reaction. Additionally, CYP154C3s also catalyzed the C-C bond cleavage of steroids. Therefore, CYP154C3s may be a good candidate for the production of modified steroids for various biological uses.

Hydroxylation of Indole by PikC Cytochrome P450 from Streptomyces venezuelae and Engineering Its Catalytic Activity by Site-Directed Mutagenesis

  • Lee Sang-Kil;Park Je-Won;Park Sung-Ryeol;Ahn Jong-Seog;Choi Cha-Yong;Yoon Yeo-Joon
    • Journal of Microbiology and Biotechnology
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    • 제16권6호
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    • pp.974-978
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    • 2006
  • The cytochrome P450 monooxygenase from the pikromycin biosynthetic gene cluster in Streptomyces venezuelae, known as PikC, was observed to hydroxylate the unnatural substrate indole to indigo. Furthermore, the site-directed mutagenesis of PikC monooxygenase led to the mutant enzyme F171Q, in which Phe171 was altered to Gln, with enhanced activity for the hydroxylation of indole. From enzyme kinetic studies, F171Q showed an approximately five-fold higher catalytic efficiency compared with the wild-type PikC. Therefore, these results demonstrate the promising application of P450s originating from Streptomyces, normally involved in polyketide biosynthesis, to generate a diverse array of other industrially useful compounds.

신생 쥐 간의 Progesterone $6{\alpha}-Steroid$ Hydroxylase에 대한 연구 (Study on Progesterone $6{\alpha}-Steroid$ Hydroxylase from New-born Rat Liver)

  • 조도현;박연희;유연우
    • Applied Biological Chemistry
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    • 제27권2호
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    • pp.100-106
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    • 1984
  • 신생 쥐 간의 subcellular fraction의 특징과 $6{\alpha}$-steroid hydroxylase의 subcellular localization및 특성을 살펴본 결과는 다음과 같다. 1000g 30초 침전 fraction은 총 DNA의 95%를 차지하므로써 crude nuclei fraction으로 나타났으며 또한 5'-nucleotidase의 specific activity가 높은 것은 파괴되지 않은 세포에 기인된 것으로 생각이 되며, 1450g 10분 침전 fraction은 5'-nucleotidase의 activity가 가장 높으므로 crude plasma membrane fraction으로 동정하였으나 mitochondria가 같이 침전되어 있었으며, 9000g 20분 침전 fraction은 succinate-cytochrome C reductase의 activity가 가장 높아 mitochondria fraction으로 하였고, 105,000g 60분 상등액은 LDH가 가장 높아 cytosol로 하였으며, 105,000g 60분 침전은 남은 부분으로 microsome fraction으로 추정하였다. 각 fraction에 기질인 $3{\beta}$-hydroxy-$5{\alpha}$-pregnan-20-one을 incubation시킨 후의 생성된 steroid를 보면 crude nuclei fraction에서는 pregnadiol($5{\alpha}$-pregnane-$3{\alpha}/{\beta}$, $20{\alpha}$-diol)의 형성으로 $20{\alpha}$-reduction과 $3{\alpha}$-$3{\beta}$ iso${\beta}$merization을 볼 수 있었으며 crude plasma membrane fraction에서는 $20{\alpha}$-reduction과 $6{\alpha}$-hydroxylation을 볼 수 있었으며 crude mitochondria와 cytosol에서는 $20{\alpha}$-reduction만을 crude microsome에서는 $16{\alpha}$-hydroxylation을 볼 수 있었으므로 $6{\alpha}$-hydroxylase는 crude plasma membrane에 존재함을 확인하였다. 한편 $6{\alpha}$-steroid hydroxylase에 존재함을 확인하였다. 한편 $6{\alpha}$-steroid hydroxylase의 최대 활성도는 pH 7에서 나타났으며 progesterone은 hydroxylation을 시키지 못한 반면 $3{\alpha}$-hydroxy-$5{\alpha}$-pregnan-20-one은 $6{\alpha}$-hydroxylation이 되었다.

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Inhibition of Cytochrome P450 by Propolis in Human Liver Microsomes

  • Ryu, Chang Seon;Oh, Soo Jin;Oh, Jung Min;Lee, Ji-Yoon;Lee, Sang Yoon;Chae, Jung-woo;Kwon, Kwang-il;Kim, Sang Kyum
    • Toxicological Research
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    • 제32권3호
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    • pp.207-213
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    • 2016
  • Although propolis is one of the most popular functional foods for human health, there have been no comprehensive studies of herb-drug interactions through cytochrome P450 (CYP) inhibition. The purpose of this study was to determine the inhibitory effects of propolis on the activities of CYP1A2, 2A6, 2B6, 2C9, 2C19, 2D6, 2E1 and 3A4 using pooled human liver microsomes (HLMs). Propolis inhibited CYP1A2, CYP2E1 and CYP2C19 with an $IC_{50}$ value of 6.9, 16.8, and $43.1{\mu}g/mL$, respectively, whereas CYP2A6, 2B6, 2C9, 2D6, and 3A4 were unaffected. Based on half-maximal inhibitory concentration shifts between microsomes incubated with and without nicotinamide adenine dinucleotide phosphate, propolis-induced CYP1A2, CYP2C19, and CYP2E1 inhibition was metabolism-independent. To evaluate the interaction potential between propolis and therapeutic drugs, the effects of propolis on metabolism of duloxetine, a serotonin-norepinephrine reuptake inhibitor, were determined in HLMs. CYP1A2 and CYP2D6 are involved in hydroxylation of duloxetine to 4-hydroxy duloxetine, the major metabolite, which was decreased following propolis addition in HLMs. These results raise the possibility of interactions between propolis and therapeutic drugs metabolized by CYP1A2.