ApoB and ApoA-I Kinetics in the ApoB-67 Mutation
ApoB and ApoA-I Kinetics in the ApoB-67 Mutation
批准号:
6607598
负责人:
FRANCINE K WELTY
金额:
$34.0万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-08-15 至 2007-06-30
关键词:
abetalipoproteinemias apolipoprotein B apolipoprotein E atherosclerosis blood lipoprotein metabolism cardiovascular disorder prevention chylomicrons clinical research family genetics gene mutation genetic polymorphism genotype high density lipoproteins human subject liver cells messenger RNA secretion stable isotope very low density lipoprotein
中文摘要
描述(由申请人提供):低β脂蛋白血症(HBLP)的特征是低水平的apoB(<20-50 mg/dL),apoB是低密度脂蛋白(LDL)中的主要蛋白质。申请人描述了由于apoB-67截短导致的HBLP,其中受影响的家族成员的平均LDL-C水平为39 mg/dL,HDL-C水平为65 mg/dL(比正常值高43%),并且在12年随访时,与未受影响的家族成员相比,动脉粥样硬化的发生率较低。这些发现表明,这种突变可能会阻止动脉粥样硬化的发展;因此,低LDL-C和高HDL-C水平的机制具有临床相关性。ApoB在血浆中以两种同种型存在,apoB-100,在肝脏中作为极低密度脂蛋白(VLDL)产生,apoB-100和apoB-48,在肠中作为乳糜微粒产生。杂合子apoB-67受试者有一个正常的等位基因,使apoB-100;因此,apoB-100水平将被预测为至少50%的正常;然而,他们只有24%的正常和apoB-48水平是11%的正常。对于稳定同位素,申请人已经表明,低于预期的apoB-100水平是由于VLDL apoB-100的分泌减少和催化增加以及LDL apoB-100的产生减少。申请人现在提出确定低水平apoB 48和高水平HDL-C和apoA-I的机制。申请人在19名正常受试者中的基线动力学显示:1)apoB 48库大小由分泌速率而非分解代谢分数速率确定; 2)来自肠的apoB-48的较低分泌与VLDL apoB-100的较低分泌和增加的催化剂相关;和3)HDL apoA-I和apoB 48催化剂反向相关。该资助的具体目的是:1)在16名apoB-67受试者中进行apoB和apoA-I的动力学研究,并与19名已研究的对照组进行比较; 2)确定HDL颗粒大小并确定其组成; 3)进行肠活检以测量apoB mRNA水平。待检验的假设是:1)apoB-67受试者的apoB-48分泌将降低75%,并解释了apoB-48的低水平; 2)高水平的HDL-C和apoA-I将归因于apoA-I的催化剂减少; 3)apoB-48和HDL apoA-I催化剂将负相关; 4)HDL颗粒将主要由大的、HDL 2大小的α和前α 1 -3 Lp A-I仅含有颗粒组成,并且富含胆固醇酯;和5)与对照相比,apoB-67受试者的肠apoB mRNA水平将低75%。apoB-67突变可能为低LDL-C和高HDL-C水平的机制以及降低胆固醇的新的和更好的疗法提供见解。
英文摘要
DESCRIPTION (provided by applicant): Hypobetalipoproteinemia (HBLP) is characterized by low levels of apoB (<20-50 mg/dL), the main protein in low-density lipoprotein (LDL). The applicant has described HBLP due to a truncated apoB-67 in which affected family members have mean LDL-C levels of 39 mg/dL and HDL-C levels of 65 mg/dL (43% higher than normals) and lower rates of atherosclerosis compared to unaffected family members at 12-year follow-up. These findings suggest that this mutation may prevent the development of atherosclerosis; therefore, mechanisms for the low LDL-C and high HDL-C levels are clinically relevant. ApoB exists in two isoforms in plasma, apoB-100, produced as very low density lipoprotein (VLDL) apoB-100 in the liver and apoB-48, produced as chylomicrons in the intestine. Heterozygous apoB-67 subjects have one normal allele making apoB-100; therefore, apoB-100 levels would be predicted to be at least 50% of normal; however, they are only 24% of normal and apoB-48 levels are 11% of normal. With stable isotopes, the applicant has shown that the lower than expected levels of apoB-100 result from decreased secretion and increased catabolism of VLDL apoB-100 and decreased production of LDL apoB-100. The applicant now proposes to determine mechanisms for the low levels of apoB48 and high levels of HDL-C and apoA-I. Baseline kinetics in 19 normal subjects by the applicant showed that: 1) apoB48 pool size is determined by secretion rate and not fractional catabolic rate; 2) a lower secretion of apoB-48 from the intestine is associated with a lower secretion and increased catabolism of VLDL apoB-100; and 3) HDL apoA-I and apoB48 catabolism are inversely related. The specific aims of this grant are to: 1) perform kinetics for apoB and apoA-I in 16 apoB-67 subjects and compare to 19 controls already studied; 2) size HDL particles and determine their composition; and 3) perform intestinal biopsies to measure apoB mRNA level. The hypotheses to be tested are: 1) apoB-48 secretion will be 75% lower in apoB-67 subjects and account for low levels of apoB-48; 2) high levels of HDL-C and apoA-I will be due to decreased catabolism of apoA-I; 3) apoB-48 and HDL apoA-I catabolism will be inversely correlated; 4) HDL particles will be primarily composed of large, HDL2-sized alpha and pre-alpha1-3 Lp A-I only containing particles and be cholesterol-ester enriched; and 5) intestinal apoB mRNA levels will be 75% lower in apoB-67 subjects compared to controls. The apoB-67 mutation may provide insights into mechanisms of low LDL-C and high HDL-C levels and new and better therapies to lower cholesterol.
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