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ACTIVITY-DEPENDENT POLYPEPTIDE ELONGATION IN MUSCLE

ACTIVITY-DEPENDENT POLYPEPTIDE ELONGATION IN MUSCLE
肌肉活动依赖性多肽伸长
批准号:
3457534
负责人:
DONALD B THOMASON
金额:
$9.83万
依托单位国家:
美国
项目类别:
财政年份:
1991
资助国家:
美国
项目状态:
已结题
起止时间:
1991-04-01 至 1996-03-31

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中文摘要
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英文摘要
The immediate goal of this project is to determine if a decrease in nascent polypeptide elongation rate causes the rapid decrease in protein synthesis observed in non-weightbearing skeletal muscle. A clear identification of the site-of-action of the initial events in muscle atrophy will help to define the intracellular signals that maintain normal gene expression. These signals may influence the adaptation of skeletal muscle to chronic bedrest, paraplegia, limb immobilization, and weightlessness. Rat soleus muscle loses 80% of its myofibril protein if prevented from weightbearing. Although all levels of gene expression are affected, the most rapid changes occur at the level of translation; within five hours of the onset of non-weightbearing myofibril protein synthesis rate has diminished by at least 25% as it evolves toward an eventual 50% decline. Preliminary data indicate that the initial defect may be a decreased rate of nascent polypeptide synthesis that is manifest as in increased polysome size. The working hypothesis of this proposal is that a slowed rate of elongation causes an accumulation of 80S ribosomes on the mRNA. The experiments will also determine if this form of regulation is specific for contractile proteins. Two experiments will test for more 80S ribosomes per mRNA. The first will measure amount of radioactive amino acid incorporated into the nascent polypeptide pool. Corrected for aminoacyl-tRNA specific activity, this value is proportional to the number of nascent polypeptides (and hence the number of 80S ribosomes) associated with the mRNA. The second experiment will directly measure the number of ribosomal subunits associated with both alpha-actin and cytochrome c mRNAs. To test if the regulation is specific for contractile proteins, non-muscle genes (beta- galactosidase and alcohol dehydrogenase) will be constitutively expressed in the atrophying muscle by retroviral-mediated gene transfer. The mRNAs for these genes will not reflect the polysome size shift relative to alpha- actin if regulation is specific for contractile proteins.
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Molecular Mech. Underlying Hyperglycemia-Induced Insulin Resistance in Obese AA
ACTIVITY-DEPENDENT POLYPEPTIDE ELONGATION IN MUSCLE
ACTIVITY-DEPENDENT POLYPEPTIDE ELONGATION IN MUSCLE
ACTIVITY-DEPENDENT POLYPEPTIDE ELONGATION IN MUSCLE
国内基金
海外基金
基于Aminoacyl-tRNA合成酶途径探索胆道闭锁KPE术后转归早期生物标志物及构建风险预警模型研究
  • 批准号:
    2025JJ50672
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2025
  • 负责人:
    周崇高
  • 依托单位: