• 제목/요약/키워드: gelatinase A inhibitor

검색결과 13건 처리시간 0.026초

Pyridoxatin, an Inhibitor of Gelatinase A with Cytotoxic Activity

  • Lee, Ho-Jae;Chung, Myung-Chul;Lee, Choong-Hwan;Chun, Hyo-Kon;Kim, Hwan-Mook;Kho, Yung-Hee
    • Journal of Microbiology and Biotechnology
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    • 제6권6호
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    • pp.445-450
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    • 1996
  • Gelatinase A is a member of the matrix metalloproteinases that play an important role in cancer invasion and metastasis. In the course of screening gelatinase A inhibitors from microbial sources, a fungal strain PT-262 showed a strong inhibitory activity. The strain was identified as Chaunopycnis alba on the basis of its morphological characteristics. The inhibitor was isolated from acetone extract of mycelial cake by sequential chromatographies on MCI-gel, Sephadex LH-20, and a reverse-phase HPLC column. The purified inhibitor was identified as pyridoxatin by its physico-chemical properties and spectroscopic analysis. Pyridoxatin is not a peptide analog and has cyclic hydroxamic acid moiety. It inhibited activated gelatinase A with an $IC_{50}$ value of 15.2 ${\mu}M$ using fluorescent synthetic peptide. It also had a strong cytotoxicity against human cancer cell lines in vitro. Furthermore, this compound inhibited DNA synthesis with an $IC_{50}$ value of 2.92 ${\mu}M$ in PC-3 prostate cancer cells by [$^3H$]thymidine incorporation assay.

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Gelatinase, a Possible Etiologic Factor of Photoaging, is Present in Healthy Human Facial Skin and is Inhibited by Turmeric Extract

  • Takada, Keiko;Amano, Satoshi;Matsunaga, Yukiko;Kohno, Yoshiyuki;Inomata, Shinji
    • 대한화장품학회:학술대회논문집
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    • 대한화장품학회 2003년도 IFSCC Conference Proceeding Book I
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    • pp.387-412
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    • 2003
  • Influence of gelatinase on basement membrane (BM) structure was investigated by using a skin equivalent (SE) model. The results showed that (1) gelatinase produced by cells degraded the BM and (2) the addition of matrix metalloproteinase-specific inhibitor to the SE medium accelerated the formation of BM structure, indicating that gelatinase is involved in BM impairment. The activity of gelatinase was also studied in healthy human facial skin tissues. The result of in situ zymography revealed gelatinase activity around the basal layer of the epidermis, where BM integrity was severely compromised. Therefore, this enzyme was suggested to be associated with BM decomposition in human facial skin. To assess the behavior of gelatinase in stratum corneum (SC) non-invasively, an immunological study was performed. Since positive immunostaining of pro-gelatinase B was observed in SC stripped from sun-exposed skin, whereas no positive staining detected in SC of non-irradiated skin, gelatinase in the epidermis could be non-invasively detected by measuring gelatinase in SC. Gelatinase in SC of healthy female volunteers was monitored using a special film that sensitively and conveniently detects gelatinase. Ninetr percent of SC from facial skin (l00 women, 40's-50's) was gelatinase-positive. On the other hand, SC from non-irradiated skin was negative. These results strongly suggest that (1) gelatinase is constantly produced in the facial epidermis of most middle-aged woman during their daily life, and (2) the enzyme might be involved in the aging-related degeneration of both BM and the matrix fibers of the upper layer of the dermis, acting as a very important aging factor. Strong inhibitory activity against gelatinase was found in turmeric extract and identified curcumin as the major ingredient. Topical application of cream containing turmeric extract significantly decreased the number of gelatinase-positive SC clusters in human facial skins. These results indicated that turmeric is an effective ingredient to prevent skin from photo aging by suppressing chlonically upregulated gelatinase activity by UV and to improve skin condition.

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사람 난포액에 존재하는 72 kDa Geletinase로부터 GA110을 만드는 PDI-like PDI-like Enzyme (PDI-like Enzyme in Human Follicular Fluid Converts 72 kDa Gelatinase into GA110)

  • 김지수;김해권
    • 한국발생생물학회지:발생과생식
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    • 제7권2호
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    • pp.105-112
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    • 2003
  • 최근 사람의 난포액에 존재하는 gelatinase 중 EDTA처리에 의해 활성이 크게 증가하는 GA110을 발견하였으며, 본 연구에서는 이러한 GA110이 만들어지는 기작을 알아보고자 하였다. 먼저, protein disulfide isomerase(PDI)가 관여하는지 알아보기 위해 PDI 저해제를 처리하여 GA110의 활성을 조사하였다. 난포액에 EDTA를 처리하기 전에 저해제를 첨가하여 반응시키면 저해제 의 농도가 증가할수록 GA110의 활성 이 감소하였으나 반면 72 kDa gelatinase의 활성은 증가하였다. 그러나 EDTA를 처 리 한 후 저해제를 첨가하여 반응시키면 GA110의 활성에 영 향을 주지 못하였다. 다음으로 72 kDa gelatinase로부터 GA110이 만들어지는 과정에 관여하는 효소를 분리하기 위하여 chromatography 방법을 이용하였으며 이렇게 분리한 효소와 기질을 반응시켜 GA110이 만들어지는 것을 확인하였다. 또한 PDI 항체를 이용하여 immunoblotting을 수행한 결과 난포액 내에 PDI보다 분자량은 약간 작지만 항체와 반응하는 단백질이 존재하는 것으로 나타났다. 이러한 결과로 보아 EDTA 처리로 인해 난포액에서 나타나는 GA110은 난포액 내에 존재하는 PDI와 유사한 효소의 활성화로 인해 72 kDa gelatinase 서로간에 이황화 결합이 형성되어 결국 72 kDa gelatinase dimer인 GA110이 만들어지는 것으로 추측된다.

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소의 수란관액에 의한 사람 난포액의 Gelatinase A 동위효소인 GA110의 분해 (A Gelatinase A Isoform, GA110, of Human Follicular Fluid Is Degraded by the Bovine Oviductal Fluid Component)

  • 김민정;김지영;이승재;윤용달;조동재;김해권
    • 한국발생생물학회지:발생과생식
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    • 제5권1호
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    • pp.23-33
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    • 2001
  • 포유류의 난자가 수란관내로 배란될 때는 난포액 성분도 같이 수란관내로 들어간다. 본 연구에서는 처음으로 난포액의 일부 성분이 수란관액에 의해서 변화하는 것을 관찰하였다. 사람의 난포액을 gelatin zymogram으로 분석한 결과 621kDa gelatinase 이외에 110kDa gelatinase (GA110) 등의 여러 gelatinase 활성이 나타났다. 이 활성들은 EDTA나 phenanthroline에 의해 억제된 반면 PMSF 처리에 의해서는 아무런 변화가 없었다. 소의 수란관액에서는 62kDa gelatinase의 활성만이 주로 관찰되었다. 소의 수란관 액과 사람의 난포액을 1:1로 섞고 이를 37$^{\circ}$C에서 3시간 동안 둔 결과 사람의 난포액의 GA110 활성은 사라졌다. 사람의 난포액에 APMA를 첨가한 결과 GA110의 활성은 대부분 감소하고 대신 62kDa gelatinase의 활성은 오히려 증가하였다. 반면에 사람의 난포액에 EDTA를 3시간 동안 처리한 결과 GA110의 활성은 오히려 현저히 증가하였고 이 때 다른 gelatinases의 활성은 영향을 받지 않았다. PMSF나SBTI는 난포액내의 gelatinases활성에 아무런 변화를 일으키지 않았다. EDTA, PMTA 혹은 SBTI 등의 proteinase inhibitor를 미리 처리한 사람의 난포액에 소의 수란관 내액을 섞은 경우에도GA110의 활성은 여전히 감소하였다. 사람의 혈청에서도 EDTA에 의해 활성이 현저히 증가하는 GA110이 발견되었다. 사람의 난포액과 유사하게 혈청내의 GA110도 소의 수란관액에 의하여 활성이 사라졌다. 그러나 사람의 난포과립세포의 추출물에서는 단지 92kDa gelatinase만 관찰이 되었다. 마지막으로 anti-human gelatinase A 항체를 사용하여 사람의 난포액과 혈청 그리고 난포과립세포의 추출액을 western blotting한 결과 621kDa과 GA110 만이 항원-항체 반응을 나타내었다. 이 같은 결과로 미루어 사람의 난포액과 혈청에는 gelatinase A의 독특한 isoform인 GA110이 있으며 특히 난포액내의 GA110은 수란관액성분에 의해 선택적으로 분해되는 것으로 여겨진다.

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Tissue Inhibitor of Metalloproteinases-2 Inhibits the 4-Aminophenylmercuric Acetate-Induced Activation and Autodegradation of the Free Promatrix Metalloproteinase-2

  • Jo, Yi-Hyung;Yoon, Dae-Woong;Kim, Min-Young;Lee, Yoon-Ju;Kim, Hwa-Jung;Lee, Seung-Taek
    • BMB Reports
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    • 제32권1호
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    • pp.60-66
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    • 1999
  • Matrix metalloproteinase-2 (MMP-2; 72-kDa gelatinase; 72-kDa type IV collagenase; gelatinase A) plays an important role in normal physiological processes and in many pathologic processes such as arthritis and metastasis of cancer. Tissue inhibitor of metalloproteinases-2 (TIMP-2) binds to proMMP-2 or mature MMP-2 at a 1:1 ratio and inhibits the catalytic activity of MMP-2. We demonstrated that the baculovirus/insect cell system does not have TIMP-2 activity. The human proMMP-2 free of TIMP-2 was expressed in the expression system and purified by one-step affinity chromatography using gelatin-Sepharose. The free proMMP-2 was autoactivated to the mature MMP-2 and autodegraded into smaller molecular weight forms in the absence of external activator. The activation and autodegradation of the proMMP-2 was much more rapid in the presence of 4-aminophenylmercuric acetate (APMA). Addition of TIMP-2 inhibits both APMA-induced activation and autodegradation of the free proMMP-2. However, an increasing concentration of TIMP-2 more readily inhibited activation of the free proMMP-2 than autodegradation. These results demonstrate that TIMP-2 plays roles in inhibition of both activation and autodegradation of the free proMMP-2 in addition to inhibition of the catalytic activity of MMP-2.

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Secretion and Expression of Matrix Metalloproteinase-2 and 9 from Bone Marrow Mononuclear Cells in Myelodysplastic Syndrome and Acute Myeloid Leukemia

  • Chaudhary, Ajay K;Chaudhary, Shruti;Ghosh, Kanjaksha;Shanmukaiah, Chandrakala;Nadkarni, Anita H
    • Asian Pacific Journal of Cancer Prevention
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    • 제17권3호
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    • pp.1519-1529
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    • 2016
  • Background: Matrix metalloproteinase -2 (gelatinase-A, Mr 72,000 type IV collagenase, MMP-2) and -9 (gelatinase-B, Mr 92,000 type IV collagenase, MMP-9) are key molecules that play roles in tumor growth, invasion, tissue remodeling, metastasis and stem-cell regulation by digesting extracellular matrix barriers. MMP-2 and -9 are well known to impact on solid cancer susceptibility, whereas, in hematological malignancies, a paucity of data is available to resolve the function of these regulatory molecules in bone marrow mononuclear cells (BM-MNCs) and stromal cells of myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML). Objectives: The present study aimed to investigate mRNA expression and gelatinase A and B secretion from BM-MNCs in vitro and genotypic associations of MMP-2 (-1306 C/T; rs243865), MMP-9 (-1562 C/T; rs3918242), tissue inhibitor of metalloproteinase -1 (TIMP-1) (372T/C; rs4898, Exon 5) and TIMP-2 (-418G/C; rs8179090) in MDS and AML. Results: The study covered cases of confirmed MDS (n=50), AML (n=32) and healthy controls (n=110). MMP-9 mRNA expression revealed 2 fold increased expression in MDS-RAEB II and 2.5 fold in AML M-4 (60-70% blasts). Secretion of gelatinase-B also revealed the MMP-9 mRNA expression and ELISA data also supported these data. We noted that those patients having more blast crises presented with more secretion of MMP-9 and its mRNA expression. In contrast MMP-9 (-1562 C/T) showed significant polymorphic associations in MDS (p<0.02) and AML (p<0.02). MMP-9 mRNA expression of C/T and T/T genotypes were 1.5 and 2.5 fold increased in MDS and AML respectively. In AML, MMP-2 C/T and T/T genotypes showed 2.0 fold mRNA expression. Only MMP-9 (-1306 C/T) showed significant 4 fold (p<0.001) increased risk with chemical and x-ray exposed MDS, while tobacco and cigarette smokers have 3 fold (p<0.04) risk in AML. Conclusions: In view of our results, MMP-9 revealed synergistic secretion and expression in blast crises of MDS and AML with 'gene' polymorphic effects and is significantly associated with increased risk with tobacco, cigarette and environmental exposure. Release and secretion of these enzymes may influence hematopoietic cell behavior and may be important in the clinical point of view. It may offer valuable tools for diagnosis and prognosis, as well as possible targets for the treatments.

Tumor necrosis factor α-converting enzyme inhibitor attenuates lipopolysaccharide-induced reactive oxygen species and mitogen-activated protein kinase expression in human renal proximal tubule epithelial cells

  • Bae, Eun Hui;Kim, In Jin;Choi, Hong Sang;Kim, Ha Yeon;Kim, Chang Seong;Ma, Seong Kwon;Kim, In S.;Kim, Soo Wan
    • The Korean Journal of Physiology and Pharmacology
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    • 제22권2호
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    • pp.135-143
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    • 2018
  • Tumor necrosis $factor-{\alpha}$ ($TNF{\alpha}$) and the angiotensin system are involved in inflammatory diseases and may contribute to acute kidney injury. We investigated the mechanisms by which $TNF{\alpha}$-converting enzyme (TACE) contributes to lipopolysaccharide (LPS)-induced renal inflammation and the effect of TACE inhibitor treatment on LPS-induced cellular injury in human renal proximal tubule epithelial (HK-2) cells. Mice were treated with LPS (10 mg/kg, i.p.) and HK-2 cells were cultured with or without LPS ($10{\mu}g/ml$) in the presence or absence of a type 1 TACE inhibitor ($1{\mu}M$) or type 2 TACE inhibitor ($10{\mu}M$). LPS treatment induced increased serum creatinine, $TNF{\alpha}$, and urinary neutrophil gelatinase-associated lipocalin. Angiotensin II type 1 receptor, mitogen activated protein kinase (MAPK), and TACE increased, while angiotensin-converting enzyme-2 (ACE2) expression decreased in LPS-induced acute kidney injury and LPS-treated HK-2 cells. LPS induced reactive oxygen species and the down-regulation of ACE2, and these responses were prevented by TACE inhibitors in HK-2 cells. TACE inhibitors increased cell viability in LPS-treated HK-2 cells and attenuated oxidative stress and inflammatory cytokines. Our findings indicate that LPS activates renin angiotensin system components via the activation of TACE. Furthermore, inhibitors of TACE are potential therapeutic agents for kidney injury.

Secretory Differentiation of Hamster Tracheal Epithelial Cells Increases Activation of Matrix Metalloproteinase-2

  • Shin, Chan-Young;Lee, Woo-Jong;Park, Kyu-Hwan;Ryu, Jae-Ryun;Ko, Kwang-Ho
    • Biomolecules & Therapeutics
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    • 제12권1호
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    • pp.1-8
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    • 2004
  • In chronic airway inflammatory diseases such as asthma and chronic bronchitis, it has been suggested that matrix metalloproteinases secreted from infiltrating neutrophil contribute the pathogenesis of the disease and have been a focus of intense investigation. We report here that hamster tracheal surface epithelial goblet cells (HTSE cells) produce matrix metalloproteinase-2 (MMP-2) and tissue inhibitor of metalloproteinase-2 (TIMP-2). Matrix metalloproteinase activities were investigated using [$^3H$]collagen-digestion assay and gelatin zymography. The subtype of matrix metalloproteinases expressed from HTSE cells was MMP-2 (gelatinase A), which was determined by Western blot with various subtype selective anti-matrix metalloproteinase antibodies. The MMP-2 and TIMP-2 cDNAs from HTSE cells were partially cloned by RT-PCR and they reveal more than 90% of sequence homology with those from human, rat and mouse. The collagenolytic activity was increased with the secretory differentiation of the HTSE cell and it was found that zymogen activation was responsible for the increased MMP-2 activity in HTSE cells. The results from the present study suggest that the metaplastic secretory differentiation of airway goblet cells may affect chronic airway inflammatory process by augmenting the zymogen activation of MMP-2.

Kidney Toxicity Induced by 13 Weeks Exposure to the Fruiting Body of Paecilomyces sinclairii in Rats

  • Jeong, Mi-Hye;Kim, Young-Won;Min, Jeong-Ran;Kwon, Min;Han, Beom-Suk;Kim, Jeong-Gyu;Jeong, Sang-Hee
    • Toxicological Research
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    • 제28권3호
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    • pp.179-185
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    • 2012
  • Paecilomyces sinclairiis (PS) is known as a functional food or human health supplement. However concerns have been raised about its kidney toxicity. This study was performed to investigate the kidney toxicity of PS by 13 week-oral administration to rats. Blood urea nitrogen (BUN), serum creatinine, and kidney damage biomarkers including beta-2-microglobulin (${\beta}2m$), glutathione S-transferase alpha (GST-${\alpha}$), kidney injury molecule 1 (KIM-1), tissue inhibitor of matrix metalloproteinase 1 (TIMP-1), vascular endothelial growth factor (VEGF), calbindin, clusterin, cystatin C, neutrophil gelatinase-associated lipocalin (NGAL) and osteopontin were measured during or after the treatment of PS. BUN, creatinine and kidney damage biomarkers in serum were not changed by PS. However, kidney cell karyomegaly and tubular hypertrophy were observed dose-dependently with higher severity in males. KIM-1, TIMP-1 and osteopontin in kidney and urine were increased dose dependently in male or at the highest dose in female rats. Increased urinary osteopontin by PS was not recovered at 2 weeks of post-exposure in both genders. Cystatin C in kidney was decreased at all treatment groups but inversely increased in urine. The changes in kidney damage biomarkers were more remarkable in male than female rats. These data indicate that the PS may provoke renal cell damage and glomerular filtration dysfunction in rats with histopathological lesions and change of kidney damage biomarkers in kidney or urine. Kidney and urinary KIM-1 and cystatin C were the most marked indicators, while kidney weight, BUN and creatinine and kidney damage biomarkers in serum were not influenced.

생식주기에 따른 자성 생쥐의 생식기관의 Matrix Metalloproteinase의 단백질 발현 (Protein Expression of Matrix Metalloproteinases of Mouse Reproductive Organs During Estrous Cycle)

  • 김문영;이기원;김해권;김문규;조동제
    • Clinical and Experimental Reproductive Medicine
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    • 제25권2호
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    • pp.161-170
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    • 1998
  • Protein expression patterns of matrix metalloproteinases (MMPs) were examined in mouse reproductive organs during estrous cycle. Estrous cycle was classified into diestrus, proestrus, estrus or metestus and MMP expression was analyzed by zymography using gelatin as a substrate. Uterine fluid (UF) obtained both at diestrus and proestrus exhibited 4 major MMPs including 106kDa, 64kDa, 62kDa and 59kDa gelatinases. However, in UF at estrus, the gelatinolytic activity of 64kDa MMP disappeared and that of 106kDa and 62kDa MMPs dramatically decreased. At metestrus, 64kDa MMP activity reappeared and 106kDa and 62kDa MMP exhibited increased activities such that the band intensity of 106kDa was comparable to that in UF at diestrus. Gelatinolytic activity of 59kDa MMP was not changed throughout the cycle. Both ovarian and oviductal tissue homogenate revealed 4 MMPs which corresponded to the 4 MMPs of UF. However, unlike UF MMPs, gelatinolytic activity of these MMPs did not show distinct changes throughout the cycle. Either an inhibitor of MMP, 1,10-phenanthroline, or a metal chelator, EDTA, abolished the appearance of the above MMP activities in gelatinated gel whereas a serine proteinase inhibitor, phcnylmethylsulfonyl fluoride, failed to inhibit the appearance of MMP activities, proving that gelatinolytic activity of the above reproductive tissues were due to the enzymatic activity of MMP. When gclatinolytic activity of mouse serum was examined, it revealed 5 MMPs (131kDa, 106kDa, 89kDa, 64kDa and 62kDa bands) and one gelatinase (84kDa) band. From these results, it is concluded that the protein expression of MMPs of mouse reproductive organs, particularly uterus, is temporally regulated during estrous cycle and uterine 106kDa, 64kDa and 62kDa MMPs are suggested to play an important role in cyclic tissue remodeling of mouse uterus.

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