0

Cardiovascular and Metabolic Disease Center
Mitochondrial Research Affinity Collaboration-Laboratories & Engineering

Home > 0

Computational Model Simulates AZT Metabolism In Mitochondria

  • 작성자한진
  • 작성일2006-07-27 09:59:31
  • 조회수2091
  • 첨부파일첨부파일
7/24/2006 Blacksburg, VA - Researchers at the Virginia Bioinformatics Institute (VBI) at Virginia Tech have developed a computational model that allows scientists to better understand the metabolism and toxicity of the HIV/AIDS drug zidovudine (azidothymidine, AZT). AZT is used successfully as part of Highly Active Anti-Retroviral Therapy (HAART) to control the level of the human immunodeficiency virus in HIV-infected individuals. However, long-term use of AZT may lead to side-effects in some patients. David Samuels and coworkers are interested in finding out whether the toxic side effects of AZT can eventually be minimized or even eliminated. For this purpose, they have been developing a detailed computational model that allows scientists to simulate the biochemical reactions that take place when AZT is metabolized in cells, including their mitochondria, under different metabolic conditions. Drugs like AZT may interfere with DNA replication in the mitochondria, the energy factories of our cells, and can lead to potentially fatal side effects in patients undergoing HAART treatment. Samuels, assistant professor at VBI, commented: "HAART is one of the biggest success stories in modern medicine. The goal of our work is to help improve this successful treatment by understanding the toxic effects that AZT can have in some people. There are many different ways that AZT could possibly interfere with mitochondria to cause the toxic side-effects. Our job is to model these proposed toxicity mechanisms to see which ones could actually lead to the mitochondrial defects found in AIDS patients." He added: "It is possible that no single mechanism is responsible for the toxicity, but that instead a combination of multiple effects is needed. That is the kind of problem that needs a systems biology approach." When AZT reaches a cell, it is subject to some of the same metabolic modifications or phosphorylation events that are encountered by the four naturally occurring deoxynucleosides, the building blocks used to make DNA. However, modified AZT molecules lack a specific chemical group (a hydroxyl group) that would allow DNA replication to continue. This results in premature termination of DNA synthesis. It is thought that the triphosphorylated form of AZT can enter the mitochondrial matrix, the inner core of the mitochondrion, and disrupt the replication of mitochondrial DNA by prematurely terminating DNA synthesis. Samuels added: "We're just starting our work. It is too early to say what the mechanism of mitochondrial toxicity of AZT is. The inhibition of deoxynucleoside metabolism is one possibility. The incorporation of AZT into mitochondrial DNA is another." He added: "The detailed computational model that we have developed should allow researchers to explore different hypotheses as to why AZT can lead to such debilitating side effects in some patients undergoing anti-retroviral treatment." SOURCE: Virginia Bioinformatics Institute
Total406 [ page12/28 ]
No. 제목 작성자 작성일 조회수
241 Mitochondrial Damage Impairs Oxygen Metabolism After Intracerebral Hemorrhage 2007.01.11 한진 2007.01.11 2,141
240 Weight Loss Improves Heart Rate Recovery in Overweight and Obese Men With Features of the Metabolic Syndrome 2007.01.11 한진 2007.01.11 2,128
239 Metabolic Syndrome Independently Predicts Vascular Complications in Diabetes 2007.01.11 한진 2007.01.11 1,925
238 Metabolic Syndrome Helps Predict Cardiovascular Disease and Diabetes Risk 2007.01.11 한진 2007.01.11 4,116
237 미토콘드리아 DNA의 복제 첨부파일 2007.01.10 한진 2007.01.10 3,232
236 미토콘드리아에 관심 집중 2007.01.10 한진 2007.01.10 2,177
235 미토콘드리아 산화 스트레스로 인한 파킨슨병 기전 동정 2007.01.10 한진 2007.01.10 2,730
234 미토콘드리아 이동 변화에 따른 신경세포 기능 이상 동정 2007.01.10 한진 2007.01.10 2,170
233 세포의 기능에 영향을 주는 미토콘드리아 DNA 발견 2007.01.10 한진 2007.01.10 2,817
232 미토콘드리아 DNA조절 부위 변이가 알츠하이머병과 연관 2007.01.10 한진 2007.01.10 4,206
231 미토콘드리아 돌연변이가 혈압 및 콜레스테롤 이상과 관련 2007.01.10 한진 2007.01.10 2,371
230 암세포의 아킬레스腱은 미토콘드리아 2007.01.10 한진 2007.01.10 2,064
229 Inadequate cytoplasmic antioxidant enzymes response contributes to the oxidative stress in human hypertension. 2007.01.06 한진 2007.01.06 3,717
228 A comparison of arteries and veins in oxidative stress: producers, destroyers, function, and disease. 2007.01.06 한진 2007.01.06 2,198
227 Uncoupling protein-3: clues in an ongoing mitochondrial mystery. 2007.01.06 한진 2007.01.06 2,508
처음 이전 11 12 13 14 15 16 17 18 19 20 다음 마지막