• 제목/요약/키워드: lipases

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Characterization of Lipases from Staphylococcus aureus and Staphylococcus epidermidis Isolated from Human Facial Sebaceous Skin

  • Xie, Winny;Khosasih, Vivia;Suwanto, Antonius;Kim, Hyung-Kwoun
    • Journal of Microbiology and Biotechnology
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    • 제22권1호
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    • pp.84-91
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    • 2012
  • Two staphylococcal lipases were obtained from Staphylococcus epidermidis S2 and Staphylococcus aureus S11 isolated from sebaceous areas on the skin of the human face. The molecular mass of both enzymes was estimated to be 45 kDa by SDS-PAGE. S2 lipase displayed its highest activity in the hydrolysis of olive oil at $32^{\circ}C$ and pH 8, whereas S11 lipase showed optimal activity at $31^{\circ}C$ and pH 8.5. The S2 lipase showed the property of cold-adaptation, with activation energy of 6.52 kcal/mol. In contrast, S11 lipase's activation energy, at 21 kcal/mol, was more characteristic of mesophilic lipases. S2 lipase was stable up to $45^{\circ}C$ and within the pH range from 5 to 9, whereas S11 lipase was stable up to $50^{\circ}C$ and from pH 6 to 10. Both enzymes had high activity against tributyrin, waste soybean oil, and fish oil. Sequence analysis of the S2 lipase gene showed an open reading frame of 2,067 bp encoding a signal peptide (35 aa), a pro-peptide (267 aa), and a mature enzyme (386 aa); the S11 lipase gene, at 2,076 bp, also encoded a signal peptide (37 aa), pro-peptide (255 aa), and mature enzyme (399 aa). The two enzymes maintained amino acid sequence identity of 98-99% with other similar staphylococcal lipases. Their microbial origins and biochemical properties may make these staphylococcal lipases isolated from facial sebaceous skin suitable for use as catalysts in the cosmetic, medicinal, food, or detergent industries.

세균성 리파제의 분자구조와 작용기작 (Molecular Structures and Catalytic Mechanism of Bacterial Lipases.)

  • 김형권
    • 한국미생물·생명공학회지
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    • 제31권4호
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    • pp.311-321
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    • 2003
  • 세균은 지방을 분해할 수 있는 다양한 리파제를 생산한다. 리파제는 반응조건에 따라서 지방의 합성도 수행할 수 있는데 , 이러한 효소반응과정에서 고도의 기질특이성과 위치특이성 및 입체특이성을 보이기 때문에 제약산업과 정밀화학산업에서 효소촉매로서 널리 사용되고 있다. 지금가지 200종류 이상의 리파제효소가 보고되었으며, 이것들은 효소생산기원과 아미노산 상동성을 기준으로 6개의 family로 분류된다. 지난 10년 간 세균 리파제 6종에 대한 3D구조가 밝혀졌다. 이것들은 모두 중심부분에$\alpha/\beta$폴딩구조와 세린, 히스티딘, 아스팔틴산으로 구성된 활성부위를 공통적으로 갖고 있다. 활성부위를 양친성 $\alpha$나선구조가 뚜껑처럼 덮고 있으며, 물과 오일의 경계면을 만나면, 이 뚜껑이 열리고 효소활성이 크게 증가하는 '계면활성화' 현상을 보인다. P. cepacia 리파제 구조에는 기질과 결합하는 4개의 포켓이 있는데 이중 하나는 옥시음이온 구멍이고, 다른 세 개는 기질의 sn-1, sn-2, sn-3 지방산과 결합하는 부위이다. 이 포켓의 크기와 방향 및 소수성정도에 의해서 효소의 기질특이성과 입체특이성이 결정된다. 현재 이러한 구조연구를 기반으로 사용목적에 따른 맞춤 효소를 생산하기 위한 효소 개량연구가 활발히 진행되고 있다.

Bacterial Hormone-Sensitive Lipases (bHSLs): Emerging Enzymes for Biotechnological Applications

  • Kim, T. Doohun
    • Journal of Microbiology and Biotechnology
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    • 제27권11호
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    • pp.1907-1915
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    • 2017
  • Lipases are important enzymes with biotechnological applications in dairy, detergent, food, fine chemicals, and pharmaceutical industries. Specifically, hormone-sensitive lipase (HSL) is an intracellular lipase that can be stimulated by several hormones, such as catecholamine, glucagon, and adrenocorticotropic hormone. Bacterial hormone-sensitive lipases (bHSLs), which are homologous to the C-terminal domain of HSL, have ${\alpha}/{\beta}-hydrolase$ fold with a catalytic triad composed of His, Asp, and Ser. These bHSLs could be used for a wide variety of industrial applications because of their high activity, broad substrate specificity, and remarkable stability. In this review, the relationships among HSLs, the microbiological origins, the crystal structures, and the biotechnological properties of bHSLs are summarized.

Purification and Characterization of Lipase from the Anaerobic Lipolytic Bacterium Selenomonas lipolytica

  • Behere, AdiTi S.;Dighe, Abhijit S.;Bhosale, Suresh B.;Ranade, Dilip R.
    • Journal of Microbiology and Biotechnology
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    • 제12권1호
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    • pp.142-144
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    • 2002
  • Two different extracellular lipases were produced by an anaerobic bacterium, Selenomonas lipolytica. A major lipase, lipase I, was isolated, which showed optimum activity at pH 6.0 and at $45^{\circ}C$. It showed a molecular weight of 240 kDa and was a tetramer of a subunit having molecular weight of 60 kDa, which is different from the known bacterial lipases.

Purification and Properties of Extracellular Lipases with Transesterification Activity and 1,3-Regioselectivity from Rhizomucor miehei and Rhizopus oryzae

  • Tako, Miklos;Kotogan, Alexandra;Papp, Tamas;Kadaikunnan, Shine;Alharbi, Naiyf S.;Vagvolgyi, Csaba
    • Journal of Microbiology and Biotechnology
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    • 제27권2호
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    • pp.277-288
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    • 2017
  • Rhizomucor miehei NRRL 5282 and Rhizopus oryzae NRRL 1526 can produce lipases with high synthetic activities in wheat bran-based solid-state culture. In this study, the purification and biochemical characterization of the lipolytic activities of these lipases are presented. SDS-PAGE indicated a molecular mass of about 55 and 35 kDa for the purified R. miehei and Rh. oryzae enzymes, respectively. p-Nitrophenyl palmitate (pNPP) hydrolysis was maximal at $40^{\circ}C$ and pH 7.0 for the R. miehei lipase, and at $30^{\circ}C$ and pH 5.2 for the Rh. oryzae enzyme. The enzymes showed almost equal affinity to pNPP, but the $V_{max}$ of the Rh. oryzae lipase was about 1.13 times higher than that determined for R. miehei using the same substrate. For both enzymes, a dramatic loss of activity was observed in the presence of 5 mM $Hg^{2+}$, $Zn^{2+}$, or $Mn^{2+}$, 10 mM N-bromosuccinimide or sodium dodecyl sulfate, and 5-10% (v/v) of hexanol or butanol. At the same time, they proved to be extraordinarily stable in the presence of n-hexane, cyclohexane, n-heptane, and isooctane. Moreover, isopentanol up to 10% (v/v) and propionic acid in 1 mM concentrations increased the pNPP hydrolyzing activity of R. miehei lipase. Both enzymes had 1,3-regioselectivity, and efficiently hydrolyzed p-nitrophenyl (pNP) esters with C8-C16 acids, exhibiting maximum activity towards pNP-caprylate (R. miehei) and pNP-dodecanoate (Rh. oryzae). The purified lipases are promising candidates for various biotechnological applications.

Optimization of the Process for Biodiesel Production Using a Mixture of Immobilized Rhizopus oryzae and Candida rugosa Lipases

  • Lee, Jong-Ho;Lee, Dong-Hwan;Lim, Jung-Soo;Um, Byung-Hwan;Park, Chul-Hwan;Kang, Seong-Woo;Kim, Seung-Wook
    • Journal of Microbiology and Biotechnology
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    • 제18권12호
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    • pp.1927-1931
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    • 2008
  • In this study, the enzymatic process for biodiesel production was optimized using a mixture of immobilized Rhizopus oryzae and Candida rugosa lipases. The optimal temperature and agitation speed for biodiesel production were $45^{\circ}C$ and 300 rpm, respectively. The optimal ratio of R. oryzae and C. rugosa lipases in the mixture was 3:1 (w:w). When 3 mmol of methanol was the initial reaction medium and 3 mmol of methanol was added every 1.5 h during biodiesel production, biodiesel conversion was over 98% at 4 h. In addition, when the immobilized lipase mixture was reused, biodiesel conversion exceeded 80% after 5 reuses.

Lipolytic Enzymes Involved in the Virulence of Human Pathogenic Fungi

  • Park, Minji;Do, Eunsoo;Jung, Won Hee
    • Mycobiology
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    • 제41권2호
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    • pp.67-72
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    • 2013
  • Pathogenic microbes secrete various enzymes with lipolytic activities to facilitate their survival within the host. Lipolytic enzymes include extracellular lipases and phospholipases, and several lines of evidence have suggested that these enzymes contribute to the virulence of pathogenic fungi. Candida albicans and Cryptococcus neoformans are the most commonly isolated human fungal pathogens, and several biochemical and molecular approaches have identified their extracellular lipolytic enzymes. The role of lipases and phospholipases in the virulence of C. albicans has been extensively studied, and these enzymes have been shown to contribute to C. albicans morphological transition, colonization, cytotoxicity, and penetration to the host. While not much is known about the lipases in C. neoformans, the roles of phospholipases in the dissemination of fungal cells in the host and in signaling pathways have been described. Lipolytic enzymes may also influence the survival of the lipophilic cutaneous pathogenic yeast Malassezia species within the host, and an unusually high number of lipase-coding genes may complement the lipid dependency of this fungus. This review briefly describes the current understanding of the lipolytic enzymes in major human fungal pathogens, namely C. albicans, C. neoformans, and Malassezia spp.

PBSA 분해효소 유전자의 분석 (Analysis of Gene Encoding the PBSA Degradation Enzyme)

  • 주현진;김말남
    • 환경생물
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    • 제28권2호
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    • pp.95-100
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    • 2010
  • 우리나라 토양으로부터 분리된 (주와 김 2009) poly (butylene succinate-co-butylene adipate; PBSA) 분해균 Burkholderia cepacia PBSA-7, Bacillus licheniformis PBSA-8 및 Burkholderia sp. PBSA-9에서 PBSA 분해효소를 암호화하는 유전자를 분석하였다. PCR을 수행하여 B.cepacia PBSA-7과 Burkholderia sp. PBSA-9는 약 1.5 Kb, B. licheniformis PBSA-8은 약 600 bp의 lipase 유전자(lip A) 절편을 가지는 것을 확인하였다. 세 균주 모두에서 유전자의 염기서열 내 lipase box인 Gly-X1-Ser-X2-Gly와 Ala-X1-Ser-X2-Gly가 존재하였다. B. cepacia PBSA-7의 PBSA 분해효소 유전자는 family I-1 lipases와 36~40%, family I-2 lipases와는 82~92%의 높은 유전적 상동성을 보였다. 또한 B. licheniformis PBSA-8의 PBSA 분해효소 유전자는 subfamily 1-4 lipases와 64~65%의 유전적 상동성을 나타내었으나, subfamily 1-5에 속하는 lipase들과는 거의 유전적 상동성이 없는 것으로 나타났다. Burkholderia sp. PBSA-9의 PBSA 분해효소 유전자도 family I-1 lipases와 35~37%, family I-2 lipases와는 83~94%로 높은 유전적 상동성을 보여 B. cepacia PBSA-7의 PBSA 분해효소 유전자와 유사한 결과를 보였다.

Synthesis of $\beta$-Sitosterol Esters with Conjugated Linoleic Acid and Medium Chain Fatty Acids by Using Lipase as Catalyst

  • Vu, Phuong-Lan;Lee, Ki-Teak
    • 한국식품저장유통학회:학술대회논문집
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    • 한국식품저장유통학회 2003년도 춘계총회 및 제22차 학술발표회
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    • pp.104.2-105
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    • 2003
  • Plant steryl esters have good effects on plasma cholesterol level and are used as functional food ingredient. Conjugated linoleic acid (CLA) presents mainly in animal foods and has a good benefit and medium chain fatty acids (MCFAs) are a rapid energy source for human. In this study, we produced the ${\beta}$-sitosterol esters from CLA and MCFAs using various lipases as catalysts. Among lipases, AYS (from Candida rugosa) was the most effective for synthesis of ${\beta}$-sitosterol esters in the presence of water (24.35% conversion) or hexane (25.33% conversion). The second esterification extent was obtained by lipase AK (from Pseudomonas sp), showing 10.26% conversion in water and 15.94% conversion in hexane, respectively. The reaction condition was 1:3 molar ratio (${\beta}$-sitosterol:fatty acid, 1:3) and stirred (175 rpm) at 55$^{\circ}C$ in water bath shaker for 48h.

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