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1
Studies in vivo on the biosynthesis of collagen and elastin in ascorbic acid-deficient guinea pigs. Evidence for the formation and degradation of a partially hydroxylated collagen.抗坏血酸缺乏豚鼠体内胶原蛋白和弹性蛋白生物合成的研究。关于部分羟基化胶原蛋白形成和降解的证据。
Biochem J. 1970 Sep;119(3):575-85. doi: 10.1042/bj1190575.
2
Studies in vivo on the biosynthesis of collagen and elastin in ascorbic acid-deficient guinea pigs.关于抗坏血酸缺乏的豚鼠体内胶原蛋白和弹性蛋白生物合成的研究。
Biochem J. 1969 Jun;113(2):387-97. doi: 10.1042/bj1130387.
3
Influence of ascorbic acid on ribosomal patterns and collagen biosynthesis in healing wounds of scorbutic guinea pigs.抗坏血酸对坏血病豚鼠愈合伤口中核糖体模式和胶原蛋白生物合成的影响。
Biochem J. 1974 Sep;142(3):641-51. doi: 10.1042/bj1420641.
4
Specifically decreased collagen biosynthesis in scurvy dissociated from an effect on proline hydroxylation and correlated with body weight loss. In vitro studies in guinea pig calvarial bones.坏血病中胶原蛋白生物合成的特异性降低与脯氨酸羟化作用无关,而是与体重减轻相关。豚鼠颅骨的体外研究。
J Clin Invest. 1983 Sep;72(3):826-35. doi: 10.1172/JCI111053.
5
Ascorbic acid and the biosynthesis of collagen and elastin.抗坏血酸与胶原蛋白和弹性蛋白的生物合成
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6
The collagen content of skin and gingival tissues in ascorbic acid-deficient monkeys.缺乏抗坏血酸的猴子皮肤和牙龈组织中的胶原蛋白含量。
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7
The effects of ascorbic acid deficiency on calcium and collagen metabolism in cultured fetal rat bones.抗坏血酸缺乏对培养的胎鼠骨骼中钙和胶原蛋白代谢的影响。
Calcif Tissue Res. 1975;17(2):113-27. doi: 10.1007/BF02547284.
8
Studies on the formation of collagen. IV. Effect of vitamin C deficiency on the neutral salt-extractible collagen of skin.胶原蛋白形成的研究。IV. 维生素C缺乏对皮肤中中性盐可提取胶原蛋白的影响。
J Exp Med. 1959 Jun 1;109(6):557-69. doi: 10.1084/jem.109.6.557.
9
Vitamin C deficiency in guinea pigs differentially affects the expression of type IV collagen, laminin, and elastin in blood vessels.豚鼠体内维生素C缺乏会对血管中IV型胶原蛋白、层粘连蛋白和弹性蛋白的表达产生不同影响。
J Nutr. 1999 Jan;129(1):83-91. doi: 10.1093/jn/129.1.83.
10
Vitamin C deficiency in guinea pigs: changes in urinary excretion of proline, hydroxyproline and total amino nitrogen.豚鼠维生素C缺乏症:脯氨酸、羟脯氨酸和总氨基氮尿排泄量的变化
Int J Vitam Nutr Res. 1979;49(2):152-9.

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Cell division cycle 7 kinase is a negative regulator of cell-mediated collagen degradation.细胞分裂周期蛋白 7 激酶是细胞介导的胶原降解的负调节剂。
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Ascorbic acid status as affected by dietary treatment in the Siberian sturgeon (Acipenser baeri Brandt): tissue concentration, mobilisation and L-gulonolactone oxidase activity.维生素 C 状态受西伯利亚鲟(Acipenser baeri Brandt)饮食治疗的影响:组织浓度、动员和 L-古洛糖酸内酯氧化酶活性。
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The effect of ascorbic acid on the nature and production of collagen and elastin by rat smooth-muscle cells.抗坏血酸对大鼠平滑肌细胞胶原蛋白和弹性蛋白的性质及生成的影响。
Biochem J. 1980 Jan 15;186(1):217-25. doi: 10.1042/bj1860217.
9
Effect of ascorbic acid on protein synthesis and collagen hydroxylation in continuous flow organ cultures of adult mouse periodontal tissues.抗坏血酸对成年小鼠牙周组织连续流动器官培养中蛋白质合成和胶原羟化的影响。
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10
Impaired wound healing in streptozotocin diabetes. Prevention by supplemental vitamin A.链脲佐菌素诱导糖尿病中伤口愈合受损。补充维生素A可预防。
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本文引用的文献

1
Enzymatic hydroxylation of proline and lysine in protocollagen.原胶原蛋白中脯氨酸和赖氨酸的酶促羟基化作用。
Proc Natl Acad Sci U S A. 1967 Mar;57(3):782-9. doi: 10.1073/pnas.57.3.782.
2
Studies on the role of ascorbic acid in collagen synthesis.关于抗坏血酸在胶原蛋白合成中作用的研究。
J Biol Chem. 1960 Feb;235:426-8.
3
Alterations in state of molecular aggregation of collagen induced in chick embryos by beta-aminopropionitrile (lathyrus factor).β-氨基丙腈(山黧豆因子)诱导鸡胚中胶原蛋白分子聚集状态的改变。
J Exp Med. 1959 Nov 1;110(5):771-90. doi: 10.1084/jem.110.5.771.
4
ENZYMATIC HYDROXYLATION OF PROLINE IN MICROSOMAL POLYPEPTIDE LEADING TO FORMATION OF COLLAGEN.微粒体多肽中脯氨酸的酶促羟基化作用导致胶原蛋白的形成。
Proc Natl Acad Sci U S A. 1965 Feb;53(2):335-42. doi: 10.1073/pnas.53.2.335.
5
INFLUENCE OF CHELATING AGENTS ON THE BIOSYNTHESIS OF COLLAGEN.螯合剂对胶原蛋白生物合成的影响。
Biochim Biophys Acta. 1965 Feb 15;97:361-3. doi: 10.1016/0304-4165(65)90108-x.
6
CARDIOVASCULAR STUDIES ON COPPER-DEFICIENT SWINE. IV. CONTENT AND SOLUBILITY OF THE AORTIC ELASTIN, COLLAGEN, AND HEXOSAMINE.缺铜猪的心血管研究。IV. 主动脉弹性蛋白、胶原蛋白和己糖胺的含量及溶解性。
J Biol Chem. 1963 Sep;238:3115-8.
7
Function of ascorbic acid in the conversion of proline to collagen hydroxyproline.抗坏血酸在脯氨酸转化为胶原蛋白羟脯氨酸过程中的作用。
Nature. 1962 May 12;194:555-7. doi: 10.1038/194555a0.
8
Some aspects of collagen formation.胶原蛋白形成的某些方面。
Ann N Y Acad Sci. 1960 Mar 29;85:385-98. doi: 10.1111/j.1749-6632.1960.tb49969.x.
9
Conversion of proline to hydroxyproline and its incorporation into collagen.脯氨酸向羟脯氨酸的转化及其掺入胶原蛋白的过程。
J Biol Chem. 1961 Jan;236:149-52.
10
Studies on the formation of collagen. IV. Effect of vitamin C deficiency on the neutral salt-extractible collagen of skin.胶原蛋白形成的研究。IV. 维生素C缺乏对皮肤中中性盐可提取胶原蛋白的影响。
J Exp Med. 1959 Jun 1;109(6):557-69. doi: 10.1084/jem.109.6.557.

抗坏血酸缺乏豚鼠体内胶原蛋白和弹性蛋白生物合成的研究。关于部分羟基化胶原蛋白形成和降解的证据。

Studies in vivo on the biosynthesis of collagen and elastin in ascorbic acid-deficient guinea pigs. Evidence for the formation and degradation of a partially hydroxylated collagen.

作者信息

Barnes M J, Constable B J, Morton L F, Kodicek E

出版信息

Biochem J. 1970 Sep;119(3):575-85. doi: 10.1042/bj1190575.

DOI:10.1042/bj1190575
PMID:5500318
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1179389/
Abstract
  1. After the administration of l-[G-(3)H]proline to guinea pigs deprived of ascorbic acid for increasing periods of time, the specific radioactivities of proline and hydroxyproline in skin collagen and aortic elastin were determined at various time-intervals after administration of the labelled compound with a view to studying the formation and degradation of collagen and elastin both deficient in hydroxyproline. 2. As judged from the incorporation of radioactivity into elastin proline, elastin synthesis was not decreased in the ascorbic acid-deficient animals. There was however, a rapid decline in the specific radioactivity of elastin hydroxyproline. The proline/hydroxyproline specific-radioactivity ratio was approx. 1.5:1 after 6 days and 20:1 after 12 days of ascorbic acid deprivation, in contrast with the ratio of 1:1 in controls. The results suggested that the effect of ascorbic acid deficiency on elastin biosynthesis could be regarded as simply an elimination of hydroxylation of elastin proline with the formation and retention of a polymer increasingly deficient in hydroxyproline. 3. Collagen proline and hydroxyproline specific radioactivities were derived from material that was soluble in hot trichloroacetic acid, non-diffusible and collagenase-degradable. In contrast with elastin, there was a rapid decline in the specific radioactivity of proline as well as hydroxyproline in collagen from the ascorbic acid-deficient animals. However, the proline/hydroxyproline specific-radioactivity ratio in all samples from scorbutic animals was consistently slightly above 1:1. The results suggest the appearance in place of collagen, but in rapidly diminishing amounts, of a partially hydroxylated collagen in which the degree of hydroxylation may be decreased only by approx. 10%. 4. Incorporation of radioactivity into the diffusible hydroxyproline in skin remained relatively high despite the rapid decline in the incorporation of radioactivity into collagen. This observation is interpreted as indicative of an increasing degree of degradation of partially hydroxylated collagen to diffusible peptides. An alternative explanation might be that partially hydroxylated peptides are released to an increasing extent from ribosomes before they attain a length at least sufficient to render them non-diffusible. In either case it implies the accumulation in scurvy of low-molecular-weight peptides enriched in proline and deficient in hydroxyproline and could explain the failure to accumulate a high-molecular-weight collagen deficient in hydroxyproline. 5. It is thought, however, that, in addition, an inhibition of ribosomal amino acid incorporation leading to decreased synthesis of partially hydroxylated collagen may also occur, perhaps secondarily to impaired hydroxylation.
摘要
  1. 给豚鼠长期剥夺抗坏血酸后,再给予l-[G-(3)H]脯氨酸,在给予标记化合物后的不同时间间隔,测定皮肤胶原蛋白和主动脉弹性蛋白中脯氨酸和羟脯氨酸的比放射性,以研究羟脯氨酸缺乏的胶原蛋白和弹性蛋白的形成与降解。2. 从放射性掺入弹性蛋白脯氨酸的情况判断,抗坏血酸缺乏的动物中弹性蛋白合成并未减少。然而,弹性蛋白羟脯氨酸的比放射性迅速下降。抗坏血酸缺乏6天后,脯氨酸/羟脯氨酸比放射性约为1.5:1,缺乏12天后为20:1,而对照组为1:1。结果表明,抗坏血酸缺乏对弹性蛋白生物合成的影响可简单视为弹性蛋白脯氨酸羟化作用的消除,形成并保留了羟脯氨酸含量越来越低的聚合物。3. 胶原蛋白脯氨酸和羟脯氨酸的比放射性来自可溶于热三氯乙酸、不可扩散且可被胶原酶降解的物质。与弹性蛋白不同,抗坏血酸缺乏动物的胶原蛋白中脯氨酸和羟脯氨酸的比放射性迅速下降。然而,坏血病动物所有样本中的脯氨酸/羟脯氨酸比放射性始终略高于1:1。结果表明,出现了部分羟化的胶原蛋白来替代胶原蛋白,但数量迅速减少,其中羟化程度可能仅降低约10%。4. 尽管放射性掺入胶原蛋白的量迅速下降,但皮肤中可扩散羟脯氨酸的放射性掺入量仍相对较高。这一观察结果被解释为部分羟化胶原蛋白降解为可扩散肽的程度增加的迹象。另一种解释可能是,部分羟化肽在达到至少足以使其不可扩散的长度之前,从核糖体释放的程度越来越大。无论哪种情况,都意味着坏血病中富含脯氨酸且缺乏羟脯氨酸的低分子量肽会积累,这可以解释无法积累羟脯氨酸缺乏的高分子量胶原蛋白的原因。5. 然而,人们认为,除此之外,可能还会发生核糖体氨基酸掺入的抑制,导致部分羟化胶原蛋白的合成减少,这可能是羟化受损的继发结果。