0

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

Home > 0

Researchers identify protein pathway involved in Parkinson disease development

  • 작성자한진
  • 작성일2007-06-25 17:59:34
  • 조회수2530
20.06.2007 Scientists have found a novel signaling pathway in cells that is altered by genetic mutations recently identified in Parkinson disease development. These new findings show how the mutations affect cellular function and could provide a target for drug therapies to treat the disease. The research by a team of Emory University scientists will be published June 18 in the Public Library of Science Biology (PLoS Biology) journal. Anzeige Parkinson disease is a degenerative disorder of the central nervous system resulting from the loss of neurons in the brain that produce dopamine. This lowering of dopamine leads to decreased stimulation of the brain's motor cortex. Although scientists have not known the exact cause of the loss of these dopamine-producing neurons, they believe it is related to dysfunctional mitochondria and oxidative stress. Mitochondria are the cell's "power plants," which metabolize oxygen and generate energy. Oxidative stress is the damage caused to cells by reactive oxygen produced during oxygen metabolism. Although cells have mechanisms in place to protect against oxidative damage, this system can break down in the face of environmental challenges or genetic mutations. The Emory researchers found that the mitochondrial protein PINK1 normally protects cells from oxidative stress and promotes cell survival by regulating function of the protein TRAP1. When PINK1 is mutated, however, the protective TRAP1 pathway is disrupted, leading to mitochondrial damage. Other scientists recently have linked early onset Parkinson disease to mutations in both copies of the PINK1 gene (one from each parent). They also have evidence that single-copy mutations in PINK1 are a significant risk factor for the development of later-onset Parkinson disease. "We now know much more about the effect of PINK1 mutations on the mitochondria and how this novel signaling pathway is disrupted in the development of Parkinson disease," says Lian Li, PhD, associate professor of pharmacology in Emory University School of Medicine and research team leader. "We believe the PINK1 and TRAP1 pathway may be a future target for therapeutic intervention."
Total406 [ page8/28 ]
No. 제목 작성자 작성일 조회수
301 "인류가 암(cancer)과의 전쟁을 선포한 지 40년 가까운 세월이 흘렀지만, 여전히 이 전쟁에서 암 세포가 승리하고 있다." 2008.09.09 김형규 2008.09.09 2,002
300 축하합니다, 박원선 선생님. 2008.08.29 한진 2008.08.29 1,950
299 미토콘드리아 DNA를 방출하여 세균을 잡는 호산구 2008.08.19 한진 2008.08.19 2,230
298 한진교수님, 신문에 나셨어요! 2008.08.08 홍다혜 2008.08.08 2,157
297 롯데경기 다시보기 2008.07.12 최성우 2008.07.12 2,680
296 뚱뚱한 사람 ‘당뇨·심장병’ 잘 생기는 이유 찾았다 2008.07.07 한진 2008.07.07 2,237
295 Mitochondrial dysfunction and redox signaling in atrial tachyarrhythmia 2008.06.08 한진 2008.06.08 4,008
294 근위축증-세포사멸 -미토콘드리아 -네이쳐 2008.04.28 김형규 2008.04.28 4,444
293 PPAR and diabetics (PPAR 리간드로 당뇨치료) 2008.04.28 김형규 2008.04.28 3,814
292 알츠하이머 억제 효소, 다른 치매에는 악영향 (2008-04-24) 2008.04.28 김형규 2008.04.28 3,153
291 암세포 조절 유전자 -glut 3 2008.04.25 김형규 2008.04.25 3,206
290 Weekly research highlight in NATURE 2008.04.11 김형규 2008.04.11 2,880
289 "아연"이 뇌신경세포 사멸시킨다. 2008.04.11 김형규 2008.04.11 2,954
288 2008 KHUPO congress 소개 2008.04.10 김형규 2008.04.10 2,682
287 International Physiome Symposium 2008 2008.03.28 한진 2008.03.28 2,527
처음이전 1 2 3 4 5 6 7 8 9 10 다음 마지막