• 제목/요약/키워드: Cellular mechanism

검색결과 1,260건 처리시간 0.026초

Peroxiredoxins and the Regulation of Cell Death

  • Hampton, Mark B.;O'Connor, Karina M.
    • Molecules and Cells
    • /
    • 제39권1호
    • /
    • pp.72-76
    • /
    • 2016
  • Cell death pathways such as apoptosis can be activated in response to oxidative stress, enabling the disposal of damaged cells. In contrast, controlled intracellular redox events are proposed to be a significant event during apoptosis signaling, regardless of the initiating stimulus. In this scenario oxidants act as second messengers, mediating the post-translational modification of specific regulatory proteins. The exact mechanism of this signaling is unclear, but increased understanding offers the potential to promote or inhibit apoptosis through modulating the redox environment of cells. Peroxiredoxins are thiol peroxidases that remove hydroperoxides, and are also emerging as important players in cellular redox signaling. This review discusses the potential role of peroxiredoxins in the regulation of apoptosis, and also their ability to act as biomarkers of redox changes during the initiation and progression of cell death.

Anti-Melanogenic Effect from Submerged Mycelial Cultures of Ganoderma weberianum

  • Lai, Ying-Jang;Hsu, Kai-Di;Huang, Tzu-Jung;Hsieh, Chang-Wei;Chan, Yu-Hin;Cheng, Kuan-Chen
    • Mycobiology
    • /
    • 제47권1호
    • /
    • pp.112-119
    • /
    • 2019
  • Compounds from Lingzhi has been demonstrated the ability for inhibiting tyrosinase (a key enzyme in melanogenesis) activity. In this study, we investigated the anti-melanogenic activity from the submerged mycelial culture of Ganoderma weberianum and elucidated the skin lightening mechanism by B16-F10 murine melanoma cells. From the cellular context, several fractionated mycelium samples exhibited anti-melanogenic activity by reducing more than 40% extracellular melanin content of B16-F10 melanoma cells. In particular, the fractionated chloroform extract (CF-F3) inhibited both secreted and intracellular melanin with the lowest dosage (25 ppm). Further analysis demonstrated that CF-F3 inhibited cellular tyrosinase activity without altering its protein expression. Taken together, our study has demonstrated that the chemical extracts from submerged mycelial culture of G. weberianum have the potential to serve as an alternative anti-melanogenic agent.

Effects of Ginseng Total Saponin on Morphine-induced Alterations in Brain Opioid and Dopamine Receptors

  • Kim, A.-Y.;Lee, S.-Y.;Kim, Y.-R.;G.-S. Yoo;D.-K. Lim;K. W. Oh;Kim, K.-M.
    • 한국응용약물학회:학술대회논문집
    • /
    • 한국응용약물학회 1995년도 춘계학술대회
    • /
    • pp.100-100
    • /
    • 1995
  • Several behavioral studies have suggested that ginseng total saponin (GTS) antagonizes morphine actions. Based on these observations, we conducted biochemical studies to elucidate the cellular mechanism of GTS actions. morphine hydrochloride (10mg/kg, sc) and/or on (400mg/kg, oral ) were administered to mice for 14 consecutive days. Ligand binding studies were conducted from striatal membranes. For opioid receptors, morphine increased the affinity but decreased the maximal binding sites for $^3$H naloxone. GTS partially recovered it. In case of dopamine receptors, morphine increased affinity and maximal binding sites for 3H spiperone. and GTS partially blocked it. These results suggest that morphine affects cellular events by modulating opioid receptors and that opioid receptors interact with dopamine receptors to change the mental status. GTS could be helpful for the treatment of morphine- induced mental disorders.

  • PDF

Structural flexibility of Escherichia coli IscU, the iron-sulfur cluster scaffold protein

  • Kim, Bokyung;Kim, Jin Hae
    • 한국자기공명학회논문지
    • /
    • 제24권3호
    • /
    • pp.86-90
    • /
    • 2020
  • Iron-sulfur (Fe-S) clusters are one of the most ancient yet essential cofactors mediating various essential biological processes. In prokaryotes, Fe-S clusters are generated via several distinctive biogenesis mechanisms, among which the ISC (Iron-Sulfur Cluster) mechanism plays a house-keeping role to satisfy cellular needs for Fe-S clusters. The Escherichia coli ISC mechanism is maintained by several essential protein factors, whose structural characterization has been of great interest to reveal mechanistic details of the Fe-S cluster biogenesis mechanisms. In particular, nuclear magnetic resonance (NMR) spectroscopic approaches have contributed much to elucidate dynamic features not only in the structural states of the protein components but also in the interaction between them. The present minireview discusses recent advances in elucidating structural features of IscU, the key player in the E. coli ISC mechanism. IscU accommodates exceptional structural flexibility for its versatile activities, for which NMR spectroscopy was particularly successful. We expect that understanding to the structural diversity of IscU provides critical insight to appreciate functional versatility of the Fe-S cluster biogenesis mechanism.

Oxygen matters: hypoxia as a pathogenic mechanism in rhinosinusitis

  • Cho, Hyung-Ju;Kim, Chang-Hoon
    • BMB Reports
    • /
    • 제51권2호
    • /
    • pp.59-64
    • /
    • 2018
  • The airway epithelium is the first place, where a defense mechanism is initiated against environmental stimuli. Mucociliary transport (MCT), which is the defense mechanism of the airway and the role of airway epithelium as mechanical barriers are essential in innate immunity. To maintain normal physiologic function, normal oxygenation is critical for the production of energy for optimal cellular functions. Several pathologic conditions are associated with a decrease in oxygen tension in airway epithelium and chronic sinusitis is one of the airway diseases, which is associated with the hypoxic condition, a potent inflammatory stimulant. We have observed the overexpression of the hypoxia-inducible factor 1 (HIF-1), an essential factor for oxygen homeostasis, in the epithelium of sinus mucosa in sinusitis patients. In a series of previous reports, we have found hypoxia-induced mucus hyperproduction, especially by MUC5AC hyperproduction, disruption of epithelial barrier function by the production of VEGF, and down-regulation of junctional proteins such as ZO-1 and E-cadherin. Furthermore, hypoxia-induced inflammation by HMGB1 translocation into the cytoplasm results in the release of IL-8 through a ROS-dependent mechanism in upper airway epithelium. In this mini-review, we briefly introduce and summarize current progress in the pathogenesis of sinusitis related to hypoxia. The investigation of hypoxia-related pathophysiology in airway epithelium will suggest new insights on airway inflammatory diseases, such as rhinosinusitis for clinical application and drug development.

A Novel Antifungal Analog Peptide Derived from Protaetiamycine

  • Lee, Juneyoung;Hong, Hyun Joo;Kim, Jin-Kyoung;Hwang, Jae-Sam;Kim, Yangmee;Lee, Dong Gun
    • Molecules and Cells
    • /
    • 제28권5호
    • /
    • pp.473-477
    • /
    • 2009
  • Previously, the 9-mer analog peptides, 9Pbw2 and 9Pbw4, were designed based on a defensin-like peptide, protaetiamycine isolated from Protaetia brevitarsis. In this study, antifungal effects of the analog peptides were investigated. The antifungal susceptibility testing exhibited that 9Pbw4 contained more potent antifungal activities than 9Pbw2. A PI influx assay confirmed the effects of the analog peptides and demonstrated that the peptides exerted their activity by a membrane-active mechanism, in an energy-independent manner. As the noteworthy potency of 9Pbw4, the mechanism(s) of 9Pbw4 were further investigated. The membrane studies, using rhodamine-labeled giant unilamellar vesicle (GUV) and fluorescein isothiocyanate (FITC)-dextran loaded liposome, suggested that the membrane-active mechanism of 9Pbw4 could have originated from the pore-forming action and the radii of pores was presumed to be anywhere from 1.8 nm to 3.3 nm. These results were confirmed by 3D-flow cytometric contour-plot analysis. The present study suggests a potential of 9Pbw4 as a novel antifungal peptide.

Manganese and Iron Interaction: a Mechanism of Manganese-Induced Parkinsonism

  • Zheng, Wei
    • 한국환경성돌연변이발암원학회:학술대회논문집
    • /
    • 한국환경성돌연변이발암원학회 2003년도 추계학술대회
    • /
    • pp.34-63
    • /
    • 2003
  • Occupational and environmental exposure to manganese continue to represent a realistic public health problem in both developed and developing countries. Increased utility of MMT as a replacement for lead in gasoline creates a new source of environmental exposure to manganese. It is, therefore, imperative that further attention be directed at molecular neurotoxicology of manganese. A Need for a more complete understanding of manganese functions both in health and disease, and for a better defined role of manganese in iron metabolism is well substantiated. The in-depth studies in this area should provide novel information on the potential public health risk associated with manganese exposure. It will also explore novel mechanism(s) of manganese-induced neurotoxicity from the angle of Mn-Fe interaction at both systemic and cellular levels. More importantly, the result of these studies will offer clues to the etiology of IPD and its associated abnormal iron and energy metabolism. To achieve these goals, however, a number of outstanding questions remain to be resolved. First, one must understand what species of manganese in the biological matrices plays critical role in the induction of neurotoxicity, Mn(II) or Mn(III)? In our own studies with aconitase, Cpx-I, and Cpx-II, manganese was added to the buffers as the divalent salt, i.e., $MnCl_2$. While it is quite reasonable to suggest that the effect on aconitase and/or Cpx-I activites was associated with the divalent species of manganese, the experimental design does not preclude the possibility that a manganese species of higher oxidation state, such as Mn(III), is required for the induction of these effects. The ionic radius of Mn(III) is 65 ppm, which is similar to the ionic size to Fe(III) (65 ppm at the high spin state) in aconitase (Nieboer and Fletcher, 1996; Sneed et al., 1953). Thus it is plausible that the higher oxidation state of manganese optimally fits into the geometric space of aconitase, serving as the active species in this enzymatic reaction. In the current literature, most of the studies on manganese toxicity have used Mn(II) as $MnCl_2$ rather than Mn(III). The obvious advantage of Mn(II) is its good water solubility, which allows effortless preparation in either in vivo or in vitro investigation, whereas almost all of the Mn(III) salt products on the comparison between two valent manganese species nearly infeasible. Thus a more intimate collaboration with physiochemists to develop a better way to study Mn(III) species in biological matrices is pressingly needed. Second, In spite of the special affinity of manganese for mitochondria and its similar chemical properties to iron, there is a sound reason to postulate that manganese may act as an iron surrogate in certain iron-requiring enzymes. It is, therefore, imperative to design the physiochemical studies to determine whether manganese can indeed exchange with iron in proteins, and to understand how manganese interacts with tertiary structure of proteins. The studies on binding properties (such as affinity constant, dissociation parameter, etc.) of manganese and iron to key enzymes associated with iron and energy regulation would add additional information to our knowledge of Mn-Fe neurotoxicity. Third, manganese exposure, either in vivo or in vitro, promotes cellular overload of iron. It is still unclear, however, how exactly manganese interacts with cellular iron regulatory processes and what is the mechanism underlying this cellular iron overload. As discussed above, the binding of IRP-I to TfR mRNA leads to the expression of TfR, thereby increasing cellular iron uptake. The sequence encoding TfR mRNA, in particular IRE fragments, has been well-documented in literature. It is therefore possible to use molecular technique to elaborate whether manganese cytotoxicity influences the mRNA expression of iron regulatory proteins and how manganese exposure alters the binding activity of IPRs to TfR mRNA. Finally, the current manganese investigation has largely focused on the issues ranging from disposition/toxicity study to the characterization of clinical symptoms. Much less has been done regarding the risk assessment of environmenta/occupational exposure. One of the unsolved, pressing puzzles is the lack of reliable biomarker(s) for manganese-induced neurologic lesions in long-term, low-level exposure situation. Lack of such a diagnostic means renders it impossible to assess the human health risk and long-term social impact associated with potentially elevated manganese in environment. The biochemical interaction between manganese and iron, particularly the ensuing subtle changes of certain relevant proteins, provides the opportunity to identify and develop such a specific biomarker for manganese-induced neuronal damage. By learning the molecular mechanism of cytotoxicity, one will be able to find a better way for prediction and treatment of manganese-initiated neurodegenerative diseases.

  • PDF

인증 네트워크 상의 비 인가된 모바일 AP 탐지 및 차단 기법 (Mobile Malicious AP Detection and Cut-off Mechanism based in Authentication Network)

  • 임재완;장종덕;윤창표;유황빈
    • 융합보안논문지
    • /
    • 제12권1호
    • /
    • pp.55-61
    • /
    • 2012
  • 현재 무선 이동 통신 기술은 빠른 속도로 발전되고 있으며 새로운 기술의 출현과 함께 빠르게 진화되고 있다. 이러한 발전을 기반으로 스마트폰의 이용자는 빠르게 늘어나고 있고 스마트 폰의 대중화에 따라 무선 네트워크의 사용은 쉽고 편리해졌다. 그러나 보안적인 관점에서 무선은 유선 네트워크에 비해 취약한 상태이며 본 논문에서 스마트폰을 활용한 모바일 AP 기술의 보안 취약점을 지적하였다. 즉, 사내 보안 기능을 갖춘 기업 망을 우회하여 기업 내의 정보를 외부로 유출하는 등의 기술로 악용 될 수 있다는 것이다. 이에 본 논문에서는 인증 네트워크 내에서 스마트 폰을 이용한 비인가 AP(Access Point)의 탐지 및 차단하는 기법에 대해 제안한다. 비 인가된 모바일 AP의 탐지는 리눅스 환경에서 개발한 탐지 프로그램을 사용하였으며 무선 센서를 통해 비 인가된 모바일 AP의 무선 패킷을 분석하였다. 또한 무선 센서를 통해 탐지된 비인가 모바일 AP는 무선 패킷에 정보를 분석하여 본 논문에서 제안하는 차단 기법을 통해 차단하였다.

Nicotinamide에 의한 종양내 산소 분압의 증가에 있어서 혈류 또는 산소 소모의 역할 (Role of Blood Flow vs. $O_{2}$ Consumption in Nicotinamide-induced Increase $pO_{2}$ in a Murine Tumor)

  • 이인태;;조문준
    • Radiation Oncology Journal
    • /
    • 제12권1호
    • /
    • pp.17-25
    • /
    • 1994
  • Nicotinamide(NA)에 의한 종양내 산소 분압의 증가가 세포내 신진 대사의 변화 또는 산소 접근성의 변화에 기인하는지 규명하고자 NA의 세포내 산소 소모와 신진 대사에 미치는 영향을 다음과 같이 실험하여 보았다. 즉 시험관에서는 Adenylate Phosphates와 $NAD^{+}$의 변화를 동시에 생체에서는 혈류의 변화를 통하여 측정하였다. 세포 배양전 30분간 4mM(=500mg/kg) NA 처리시 세포내 산소 소모에는 영향이 없었다. 또는 4mM NA에서 세포내 Adenylate phophates와 $NAD^{+}$치의 변화도 없었다. 종양내 혈류의 변화(적혈구 흐름)로 생체내에서 NA가 산소의 접근성의 증가를 가져오는지 평가하였다. 레이저 도플러로 적혈구 흐름의 변화를 측정하였는데, 종양의 크기와 비례해서, 150$mm^{3}$ 크기의 종양에서 적혈구 흐름이 35$\% $증가하였으며 500$mm^{3}$종양에서 75$\% $증가하였다. 결론적으로 이상의 관찰에서 FSaII 생쥐 종양 모델에서 NA에 의한 종양내 산소 분압의 증가는 국소적 산소 소모의 감소에 의한 것이 아니며, 국소 종양내 혈류의 증가가 종양내 산소 분압 증가의 주 기전으로 사료된다.

  • PDF

FPGA를 이용한 진화형 하드웨어 설계 및 구현에 관한 연구 (A Study on Design of Evolving Hardware using Field Programmable Gate Array)

  • 반창봉;곽상영;이동욱;심귀보
    • 한국지능시스템학회논문지
    • /
    • 제11권5호
    • /
    • pp.426-432
    • /
    • 2001
  • 본 논문은 진화형 하드웨어를 이용하여 생물의 정보처리 시스템인 셀룰라 오토마타 신경망의 구현에 관한 연구이다. 셀룰라 오토마타 신경망은 진화 및 발생을 기반으로 한 신경망 모델이다. 진화는 다양성을 주요 근원을 제공하는 돌연변이 및 재 조합 비율에 의하여 비결정론이며, 발생은 결정론 적이며 지역적인 무리현상을 따른다. 셀룰라 오토마타 신경망은 셀룰라 오토마타에 의해 신경망 내부의 각 셀의 상태를 발생시키고, 초기 셀을 유전자 알고리즘의 개체로 간주하여 초기 셀이 진화 알고리즘을 통해 진화함으로써 신경망이 진화하는 시스템이다. 본 논문은 이 시스템을 진화형 하드웨어 이용하여 하드웨어로 구현하였다. 진화형 하드웨어는 진화 알고리즘과 재구성하드웨어의 결합체이다. 즉, 재구성 하드웨어의 구성에 필요한 bit를 유전자 알고리즘의 개체로 간주한 것이다. 진화 알고리즘을 수행하기 위해 유전자 알고리즘 프로세서를 설계하였으며, 셀룰라 오토마타 신경망이 유전자 알고리즘의 개체와 셀룰라 오토마타 룰에 의해 자동적으로 신경망을 생성하기 위해 신경망을 이루는 셀들로 설계하였다. 제안된 시스템의 효율성을 검증하기 위해 Exclusive-OR 문제에 적용하였다.

  • PDF