0

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

Home > 0

PGC-1 alpha implicated in Huntington's disease neurodegeneration

  • 작성자한진
  • 작성일2006-10-22 22:06:10
  • 조회수5091
  • 첨부파일첨부파일
A metabolic disorder underlies the brain effects found in those with Huntington's disease, researchers report in an advance article publishing online October 19, 2006. The article will appear in the November 2006 issue of the journal Cell Metabolism, published by Cell Press. Their new evidence ties a metabolic defect to the loss of neurons in the striatum, the brain's "movement control" region. That neurodegeneration leads to the uncontrollable "dance-like" movements characteristic of the fatal, genetic disorder. The findings may help to explain other symptoms of the disease, including weight loss, and could point to new avenues for therapy, according to the researchers. "Huntington's has been thought of primarily as a neurological disease," said Albert R. La Spada of the University of Washington, Seattle. "Our findings underscore the fact that the condition includes other, underrecognized aspects." The findings in Huntington's disease further highlight the possibility that other neurological conditions might also have a strong metabolic component, La Spada added. Huntington's is relentlessly progressive, the researchers said, as patients succumb to the disease 10 to 25 years after its onset. The disease is caused by a genetic defect in which a repetitive sequence of DNA in the "huntingtin" (htt) gene gets expanded to encode an abnormally elongated protein. Although the mutant htt protein is widely present, only certain populations of neurons degenerate and only a subset of other cell types are affected, they said. And exactly how the htt protein causes disease has remained uncertain. The researchers made their current discovery after stumbling onto evidence that mice with Huntington's disease suffer extremely low body temperatures that worsen as the disease progresses. "These mice have been around for at least a decade," La Spada said. "They have been the subjects of dozens, if not hundreds, of studies, but no one had checked one of their most basic vital signs. "When you do, you find that the mice have a dramatic abnormality in temperature--which is normally tightly regulated." Early on, the animals' temperature registered one or two degrees below normal, La Spada said. As their condition worsened, body temperatures fell substantially, he added, sometimes below 30?C. Like humans, the normal body temperature of mice is about 37?C. To trace the causes of the animals' hypothermia, the researchers first looked to the brain region that controls body temperature. The animals brains, however, appeared to register and respond to cold normally. The problem, they found, lay instead in fat cells known as brown adipose tissue (BAT). In rodents, BAT is the primary tissue that controls body temperature. When the brain signals that the body is cold, the gene called PGC-1 alpha increases production of a protein in BAT that leads the cellular powerhouses known as mitochondria to generate heat instead of energy. In the BAT of hypothermic Huntington's mice, PGC-1 alpha levels rose but failed to elicit the other events required to maintain normal body temperature, they found. The link to mitochondria-regulating PGC-1 alpha led the team back to the brain, and specifically to the striatum. That brain region is most affected in Huntington's disease and is particularly sensitive to mitochondrial dysfunction. The researchers found that tissue taken from striatums of Huntington's disease patients and mice showed reduced activity of genes controlled by PGC-1 alpha. They further found reduced mitochondrial function in the brains of Huntington's mice. The findings suggest a link between two theories to explain Huntington's disease, the researchers said. The earlier finding that the striatum is particularly sensitive to mitochondrial dysfunction suggested that the cellular powerhouses might play a role in the disease. Other evidence suggested that mutant htt might interfere with "transcription factors" that control gene activity. "PGC-1 alpha transcription interference may provide a link between transcription dysregulation and mitochondrial dysfunction in Huntington's disease," the researchers said. "More importantly, our study underscores an emerging role for metabolic and mitochondrial abnormalities in neurodegenerative disease." As metabolic function generally diminishes in older people, such a connection might explain why many neurodegenerative diseases--such as Lou Gehrig's, Alzheimer's, and Parkinson's diseases, for example--tend to emerge and worsen with age, La Spada said.
Total406 [ page5/28 ]
No. 제목 작성자 작성일 조회수
346 간질과 심장부정맥을 동시에 일으키는 포타슘 이온채널이상 첨부파일 2009.10.21 한진 2009.10.21 3,209
345 PBMB논문 accept소식 2009.10.08 박원선 2009.10.08 2,041
344 BPB 논문 accept소식 2009.10.06 박원선 2009.10.06 2,070
343 p53의 활성화에 따른 지방조직의 노화가 당뇨병을 유발 2009.09.02 한진 2009.09.02 2,038
342 "인삼성분, 관절염 치료에 효과" 2009.08.09 하승희 2009.08.09 1,988
341 기능이 떨어진 미토콘드리아가 노화를 억제? 2009.07.24 홍다혜 2009.07.24 3,479
340 콜라 너무 많이 마시면... 2009.05.21 홍다혜 2009.05.21 2,252
339 Exercise and Vitamins: Now, Wait A Minute. . 첨부파일 2009.05.15 한진 2009.05.15 5,480
338 인간의 두 얼굴. 상황의 힘 2009.04.27 최성우 2009.04.27 2,012
337 인제대학교 개교 30주년 기념 해외석학(Denis Noble 교수) 초청강연 첨부파일 2009.04.26 이소라 2009.04.26 2,711
336 미토콘드리아의 신비를 밝히다 첨부파일 2009.04.10 홍다혜 2009.04.10 2,301
335 심장 세포, 매년 1% 재생 2009.04.06 홍다혜 2009.04.06 1,855
334 급성 심장사와 연관된 10개의 유전자를 확인 2009.03.28 홍다혜 2009.03.28 1,839
333 제 2형 당뇨병을 부르는 낮잠 2009.03.18 홍다혜 2009.03.18 2,016
332 부산대 수지상세포 국가지정연구실 Int J Immunopathol Pharmacol논문 개제 2009.03.11 박원선 2009.03.11 2,552
처음이전 1 2 3 4 5 6 7 8 9 10 다음 마지막