• Title/Summary/Keyword: 캡 형성

Search Result 24, Processing Time 0.018 seconds

Molecular Miology of the Poliovirus (폴리오바이러스의 분자생물학)

  • 최원상
    • Journal of Life Science
    • /
    • v.7 no.4
    • /
    • pp.392-401
    • /
    • 1997
  • The poliovirus is a small, and non-enveloped virus. The RNA genome of poliovirus is continuous, linear, and has a single open reading frame. This polyprotein precursor is cleaved proteolytically to yield mature products. Most of the cleavages occur by viral protease. The mature proteins derived from the P1 polyprotein precursor are the structural components of the viral capsid. The initial cleavage by 2A protease is indirectly involved in the cleavage of a cellular protein p220, a subunit of the eukaryotic translation initiation factor 4F. This cleavage leads to the shut-off of cap-dependent host cell translation, and allows poliovirus to utilize the host cell machinery exclusively for translation its own RNA, which is initiated by internal ribosome entry via a cap-independent mechanism. The functional role of the 2B, 2C and 2BC proteins are not much known. 2B, 2C, 2BC and 3CD proteins are involved in the replication complex of virus induced vesicles. All newly synthesized viral RNAs are linked with VPg. VPg is a 22 amino acid polypeptide which is derived from 3AB. The 3C and 3CD are protease and process most of the cleavage sites of the polyprotein precursor. The 3C protein is also involved in inhibition of RNA polymerase II and III mediated transcription by converting host transcription factor to an inactive form. The 3D is the RNA dependent RNA polymerase. It is known that poliovirus replication follows the general pattern of positive strand RNA virus. Plus strand RNA is transcribed into complementary minus strand RNA that, in turn, is transcribed for the synthesis of plus strand RNA is transcribed into complementary minus strand RNA that, in turn, is transcribed for the synthesis of plus strand RNA strands. Poliovirus RNA synthesis occurs in a membranous environment but how the template RNA and proteins required for RNA replication assemble in the membrane is not much known. The RNA requirements for the encapsidation of the poliovirus genome (packaging signal) are totally unknown. The poliovirus infection cycle lasts approximately 6 hours.

  • PDF

A Comparative Evaluation on the Thermal Insulation Performance of Windows according to the Temporary Improvement Method (창호의 단열성능 간이 개선방법의 비교 분석)

  • Lee, Sung-Jin;Kim, Jeong-Gook;Kim, Jonghun;Jeong, Hakgeun;Lee, Jin-Sook;Jang, Cheol-Yong
    • KIEAE Journal
    • /
    • v.15 no.1
    • /
    • pp.77-82
    • /
    • 2015
  • The purpose of this study is to compare the thermal insulation performance of windows according to the formation of air layer and to evaluate its energy efficiency on a selected standard house. A thermal insulation test, KS F 2278 was used to measure U-values (Heat transmission coefficients) for the following three cases: the first case (Case 1) is a Low-E pair glass (Argon injected), the second case (Case 2) is a Low-E pair glass with the air cap attached on the glass surface, and the third case (Case 3) is a Low-E pair glass, on the frame of which the air cap is attached. The evaluation of the energy efficiency was conducted according to a building energy calculation method from ISO 13790, calculation of energy use for space heating and cooling, using the U-values obtained from the thermal insulation tests. As results of the tests, the U-values of Case 1, Case 2, and Case 3 were $1.668W/m^2{\cdot}K$, $1.568W/m^2{\cdot}K$, and $1.319W/m^2{\cdot}K$ respectively. The Case 2 had about 5.9% lower value than the Case 1, and the Case 3 had about 20.9% lower value than the Case 1. It seems that the thermal performance of the windows is attributed to an increase of the heat resistance and the thickness of air layer. An evaluation of the energy efficiency of the three cases on the selected standard house showed that the amount of heating energy demand per unit area was $7.776kWh/m^2{\cdot}yr$ for the Case $1,6.856kWh/m^2{\cdot}yr$ for the Case 2, and $4.856kWh/m^2{\cdot}yr$ for the Case 3. This study suggests that the formation of air layer (by using air cap) and its thickness should reduce the heat energy demand and thus improve the energy saving efficiency

The expression of c-fos and HSP70 by the Capsaicin injection in the spinal cord(dorsal horn) (Capsaicin 적용 후 손상된 흰쥐 척수내 c-fos와 HSP70의 발현)

  • Kim, Dong-Hyun;Kim, Souk-Boum;Baek, Su-Jeong;Kim, Jin-Sang
    • The Journal of Korean Physical Therapy
    • /
    • v.14 no.1
    • /
    • pp.131-137
    • /
    • 2002
  • C-fos는 원종양유전자(proto-oncogene)인 v-fos의 세포 동족체로써, 성장인자나 신경전달 물질에 의해 수분 내에 다양한 형태의 세포에서 활성화된다. Fos단백질은 스트레스와 통증 과정의 신호전달기전에서 세포활동을 조절하는 3차전령으로 활동한다. 열충격 단백질(Heat shock protein : 이하 HSP)은 계통발생학적으로 초기 척추 동물에서부터 발현되며 생체방어체계의 중요한 인자로 세포가 고열, 외상, 허혈 등의 스트레스에 직면했을 때 발현이 증가하는 단백질로 알려져 있다. 본 연구에서는 캡사이신(capsaicin)으로 말초 신경병변을 유발시킨 후 통각신경활성의 지표로 이용되는 원종양 유전자인 c-fos의 발현과 열 또는 스트레스로 야기되는 손상에 대한 조직의 방어작용으로 발현되는 HSP 70의 발현을 동시에 관찰함으로서, 급성으로 유발된 말초 신경병변의 확인과 동시에 실험동물 체내에서 방어적인 역할을 밝히는 일환으로 이 실험을 실시하였다. 본 실험의 결과는 다음과 같다; 1. 척수 등쪽뿔 천층(Laminae I and II)에서 각각 c-fos와 HSP70을 항원으로 하는 면역조직화학적 방법으로 염색한 표본에서 0.9% NaCI 투여 2시간 후 c-fos와 HSP70의 양성을 나타내는 세포는 전혀 없음을 알 수 있었다. 2. 척수 등쪽뿔 천층에서 c-fos 단백질을 항원으로 하는 면역조직화학적 방법으로 염색한 표본에서 Capsaicin 투여 2시간 후 c-fos 단백질에 양성을 나타내는 세포가 많이 발현됨을 육안적 관찰로서 알 수 있었다. 3. 척수 등쪽뿔 천층에서 HSP70을 항원으로 하는 면역조직화확적 방법으로 염색한 표본에서 Capsaicin 투여 2시간 후 HSP7O의 양성을 나타내는 세포가 보통수준으로 발현됨을 육안적 관찰로서 알 수 있었다. 이 실험의 결과로 볼 때, 화학적인 신경병변 유발물질에 의한 손상을 방어하기 위해서 체내에는 내인성 물질이 형성될 것이라는 추측과 c-fos 가 다른 유전자의 발현을 유도한다는 점을 함께 고려 하였을때, Capsaicin에 의한 말초 신경병변에서 c-fos 발현이 많이 나타나는 것은 손상을 방어하는 물질의 생성에 관여하기 때문이며, 방어물질 중 이 실험에서 본 HSP70도 증가한 내인성 방어물질의 하나라고 할 수 있을 것이다.

  • PDF

Feasibility Assessment on the Application of X-ray Computed Tomography on the Characterization of Bentonite under Hydration (벤토나이트 수화반응 특성화를 위한 X선 단층촬영 기술 적용성 평가)

  • Melvin B., Diaz;Gyung Won, Lee;Seohyeon, Yun;Kwang Yeom, Kim;Chang-soo, Lee;Minseop, Kim;Jin-Seop, Kim
    • Tunnel and Underground Space
    • /
    • v.32 no.6
    • /
    • pp.491-501
    • /
    • 2022
  • Bentonite has been proposed as a buffer and backfill material for high-level radioactive waste repository. Under such repository environment conditions, bentonite is subjected to combined thermal, hydrological, mechanical, and chemical processes. This study evaluates the feasibility of applying X-ray CT technology on the characterization of bentonite under hydration conditions using a newly developed testing cell. The cylindrical cell is made of platic material, with a removable cap to place the sample, enabling to apply vertical pressure on the sample and to measure swelling pressure. The hydration test was carried out with a sample made of Gyeonju bentonite, with a dry density of 1.4 g/cm3, and a water content of 20%. The sample had a diameter of 27.5 mm and a height of 34 mm. During the test, water was injected at a constant pressure of 0.207 MPa, and lasted for 7 days. After one day of hydration, bentonite swelled and filled out the space inside the cell. Moreover, CT histograms showed how the hydration process induced an initial increase and later progressive decrease on the density of the sample. Detailed profiles of the mean CT value, CT standard deviation, and CT gradient provided more details on the hydration process of the sample and showed how the bottom and top regions exhibited a decrease on density while the middle region showed an increase, especially during the first two days of hydration. Later, the differences in CT values with respect to the initial state decreased, and were small at the end of testing. The formation and later reduction of cracks was also characterized through CT scanning.