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Quantitation of protein turnover in the human adult lens using the 14C bomb-pulse

Quantitation of protein turnover in the human adult lens using the 14C bomb-pulse
使用 14C 炸弹脉冲定量成人晶状体中的蛋白质周转
批准号:
7359729
负责人:
Bruce A Buchholz
金额:
$27.63万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-09-01 至 2010-08-31

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中文摘要
翻译
描述(由申请人提供):研究健康人体内大分子的合成和修复是困难的。从1955年到1963年,核武器的地面试验产生了14CO2的巨大核弹脉冲,迅速分布在全球各地,并本质上标记了生物圈中所有可交换的碳。自1963年《禁止核试验条约》以来,大气中的碳- 14核弹脉冲呈指数级减少,平均寿命约为16年,这不是由于放射性衰变,而是由于扩散和与海洋和生物圈的平衡。所有活着的人都被标记,所有有机大分子在合成时都能敏感地识别出14C浓度。实际上,我们都是长期准稳定同位素示踪剂研究的对象,通过使用加速器质谱法(AMS)来计算亚毫克样品中的单个14C原子,可以确定分子合成的年代。
英文摘要
DESCRIPTION (provided by applicant): Studying synthesis and repair of macromolecules in healthy humans is difficult. Above ground testing of nuclear weapons from 1955-1963 produced a large bomb-pulse of 14CO2, which was quickly distributed around the globe and intrinsically labeled all exchangeable carbon in the biosphere. Since the Test Ban Treaty in 1963, the atmospheric 14C bomb-pulse has been decreasing exponentially with a mean life of ~ 16 years, not due to radioactive decay, but due to diffusion and equilibration with the oceans and biosphere. All living humans have been labeled, and the 14C concentration in all organic macromolecules can sensitively identify when they were synthesized. In reality, we are all subjects in a long-term quasi-stable isotope tracer study in which molecular synthesis can be dated through the use of accelerator mass spectrometry (AMS) to count individual 14C atoms in sub-milligram samples. We seek to utilize this effective molecular chronometer to establish, quantify, and identify the specific nature of protein turnover in healthy adult human eye lenses. Preliminary data from lenses age 60 and greater suggests that the crystallin proteins of aged nuclear fiber cells contain carbon significantly younger than the cells themselves. This serves as direct evidence of in vivo protein turnover in human nuclear fiber cells and verifies the controversial hypothesis that the human eye lens maintains homeostasis at its core (at least in part) by de novo protein production. We will measure carbon turnover in purified proteins from the nuclear core of lenses formed after the peak of the bomb-pulse plus some aged controls. Compared with the data gathered from older donors, dating protein incorporation in younger lenses will provide direct evidence if this rate is attenuated when we reach middle age. A better understanding of lens maintenance could provide a useful new tool to understand and ultimately prevent the most common form of lens pathology, age-related nuclear (ARN) cataract. The expense and the demand for cataract surgery have catapulted this disease to become among the single largest burdens to our beleaguered healthcare system. Although surgical intervention is a highly effective means of restoring vision, if we could delay the onset of cataract by a decade the need for the procedure would drop by half. We will establish the baseline for specific protein turnover in the healthy adult human lens and relate the turnover rate to age. Cataracts, which can be classified as an age-related protein folding disease, require a long-term (~50 year) stable isotope tracer assessment to reveal the fundamental mechanisms a healthy lens employs to maintain the viability of its exceedingly long-lived proteins. AMS has enabled us to use elevated tissue loads of 14C produced by atmospheric nuclear testing as a means to evaluate the long term dynamics of protein in healthy lens tissue. Our preliminary data has demonstrated protein turnover at approximately 1% per year by mass in the soluble crystalline proteins of the lens core, indicating that the lens possesses a mechanism for protein repair in a region of tissue previously believed to be senescent. The aim of this study is to firmly establish, quantify, and identify the specific targets of this protein exchange in healthy lenses and bring the existence of this unknown but seemingly key feature of lens physiology to the attention of cataract researchers worldwide.
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会议论文
CANCER STEM CELL LONGEVITY AND METASTATIC POTENTIAL IN BLADDER CANCER
QUANTITATION OF PROTEIN TURNOVER IN THE HUMAN LENS USING THE 14C BOMB-PULSE
CANCER STEM CELL LONGEVITY AND METASTATIC POTENTIAL IN BLADDER CANCER
QUANTITATION OF PROTEIN TURNOVER IN THE HUMAN LENS USING THE 14C BOMB-PULSE
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