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在成骨不全致死性变异体中,I型前胶原α2(I)链的甘氨酸907突变为天冬氨酸的单个碱基突变。靠近羧基末端的单个氨基酸取代使整个三螺旋结构不稳定。

A single base mutation that converts glycine 907 of the alpha 2(I) chain of type I procollagen to aspartate in a lethal variant of osteogenesis imperfecta. The single amino acid substitution near the carboxyl terminus destabilizes the whole triple helix.

作者信息

Baldwin C T, Constantinou C D, Dumars K W, Prockop D J

机构信息

Department of Biochemistry and Molecular Biology, Jefferson Medical College, Thomas Jefferson University, Philadelphia, Pennsylvania 19107.

出版信息

J Biol Chem. 1989 Feb 15;264(5):3002-6.

PMID:2914942
Abstract

Type I procollagen was examined in cultured skin fibroblasts from a patient with a lethal variant of osteogenesis imperfecta. About half of the pro-alpha chains were post-translationally overmodified and had a decreased thermal stability. The vertebrate collagenase A fragment had a normal thermal stability, but the B fragment had a decreased thermal stability. Therefore, there was a change in primary structure in amino acids 776-1014 of either the alpha 1(I) or alpha 2(I) chain. Three of five cDNA clones for the alpha 2(I) chain contained a single-base substitution of an A for a G that converted the codon for glycine at amino acid position 907 to aspartate. Complete nucleotide sequencing of bases coding for amino acids 776 to 1014 of the alpha 2(I) chain was carried out in one cDNA clone that contained the mutation in the glycine codon and in one that did not. Also, nucleotide sequencing was performed of bases coding for amino acids 776-1014 of the alpha 1(I) chain in seven independent cDNA clones. No other mutations were found. Therefore, the single base substitution that converts glycine 907 in the alpha 2(I) chain to aspartate is solely responsible for the decreased thermal stability of the type I procollagen synthesized by the proband's fibroblasts. Also, glycine 907 of the alpha 2(I) chain is an important component of a cooperative block that determines the melting temperature of the whole molecule.

摘要

对一名患有致死性成骨不全变异型患者的培养皮肤成纤维细胞中的I型前胶原进行了检测。约一半的前α链在翻译后过度修饰,热稳定性降低。脊椎动物胶原酶A片段的热稳定性正常,但B片段的热稳定性降低。因此,α1(I)或α2(I)链的氨基酸776 - 1014的一级结构发生了变化。α2(I)链的五个cDNA克隆中有三个包含一个单碱基替换,即A替换为G,该替换将氨基酸位置907处甘氨酸的密码子转换为天冬氨酸。在一个含有甘氨酸密码子突变的cDNA克隆和一个不含有该突变的cDNA克隆中,对α2(I)链氨基酸776至1014编码的碱基进行了完整的核苷酸测序。此外,对七个独立的cDNA克隆中α1(I)链氨基酸776 - 1014编码的碱基进行了核苷酸测序。未发现其他突变。因此,将α2(I)链中的甘氨酸907转换为天冬氨酸的单碱基替换是导致先证者成纤维细胞合成的I型前胶原热稳定性降低的唯一原因。此外,α2(I)链的甘氨酸907是决定整个分子解链温度的协同结构域的重要组成部分。

相似文献

1
A single base mutation that converts glycine 907 of the alpha 2(I) chain of type I procollagen to aspartate in a lethal variant of osteogenesis imperfecta. The single amino acid substitution near the carboxyl terminus destabilizes the whole triple helix.在成骨不全致死性变异体中,I型前胶原α2(I)链的甘氨酸907突变为天冬氨酸的单个碱基突变。靠近羧基末端的单个氨基酸取代使整个三螺旋结构不稳定。
J Biol Chem. 1989 Feb 15;264(5):3002-6.
2
Substitution of serine for alpha 1(I)-glycine 844 in a severe variant of osteogenesis imperfecta minimally destabilizes the triple helix of type I procollagen. The effects of glycine substitutions on thermal stability are either position of amino acid specific.在成骨不全的一种严重变体中,将丝氨酸替代α1(I)-甘氨酸844对I型前胶原三螺旋的稳定性影响最小。甘氨酸替代对热稳定性的影响因氨基酸位置而异。
J Biol Chem. 1989 Nov 25;264(33):19694-9.
3
A lethal variant of osteogenesis imperfecta has a single base mutation that substitutes cysteine for glycine 904 of the alpha 1(I) chain of type I procollagen. The asymptomatic mother has an unidentified mutation producing an overmodified and unstable type I procollagen.一种致死性成骨不全变体存在单个碱基突变,该突变使I型前胶原α1(I)链的第904位甘氨酸被半胱氨酸替代。无症状的母亲有一个未明确的突变,产生过度修饰且不稳定的I型前胶原。
J Clin Invest. 1989 Feb;83(2):574-84. doi: 10.1172/JCI113920.
4
A point mutation in a type I procollagen gene converts glycine 748 of the alpha 1 chain to cysteine and destabilizes the triple helix in a lethal variant of osteogenesis imperfecta.I型前胶原基因中的一个点突变将α1链的甘氨酸748转换为半胱氨酸,并使成骨不全致死变体中的三螺旋结构不稳定。
J Biol Chem. 1987 Oct 25;262(30):14737-44.
5
A single base mutation in type I procollagen (COL1A1) that converts glycine alpha 1-541 to aspartate in a lethal variant of osteogenesis imperfecta: detection of the mutation with a carbodiimide reaction of DNA heteroduplexes and direct sequencing of products of the PCR.I型前胶原(COL1A1)中的一个单碱基突变,在成骨不全致死变异体中将甘氨酸α1-541转变为天冬氨酸:通过DNA异源双链体的碳二亚胺反应检测该突变以及对PCR产物进行直接测序。
Am J Hum Genet. 1991 Jun;48(6):1186-91.
6
Substitution of cysteine for glycine-alpha 1-691 in the pro alpha 1(I) chain of type I procollagen in a proband with lethal osteogenesis imperfecta destabilizes the triple helix at a site C-terminal to the substitution.在一名患有致死性成骨不全症的先证者中,I型前胶原α1(I)链中甘氨酸-α1-691被半胱氨酸替代,使得三股螺旋在替代位点的C端不稳定。
Biochem J. 1991 Nov 1;279 ( Pt 3)(Pt 3):747-52. doi: 10.1042/bj2790747.
7
Substitution of serine for glycine 883 in the triple helix of the pro alpha 1 (I) chain of type I procollagen produces osteogenesis imperfecta type IV and introduces a structural change in the triple helix that does not alter cleavage of the molecule by procollagen N-proteinase.I型前胶原α1(I)链三螺旋中第883位甘氨酸被丝氨酸取代会导致IV型成骨不全,并在三螺旋中引入结构变化,但不会改变前胶原N蛋白酶对该分子的切割。
J Biol Chem. 1994 Dec 2;269(48):30352-7.
8
Two cysteine substitutions in procollagen I: a glycine replacement near the N-terminus of alpha 1(I) chain causes lethal osteogenesis imperfecta and a glycine replacement in the alpha 2(I) chain markedly destabilizes the triple helix.原胶原蛋白I中的两个半胱氨酸替代:α1(I)链N端附近的甘氨酸替代导致致死性成骨不全,而α2(I)链中的甘氨酸替代显著破坏三螺旋结构的稳定性。
Biochem J. 1993 Jan 1;289 ( Pt 1)(Pt 1):195-9. doi: 10.1042/bj2890195.
9
Substitution of cysteine for glycine-946 in the alpha 1(I) chain of type I procollagen causes lethal osteogenesis imperfecta.I型前胶原α1(I)链中第946位甘氨酸被半胱氨酸取代会导致致死性成骨不全。
J Biochem. 1994 May;115(5):853-7. doi: 10.1093/oxfordjournals.jbchem.a124429.
10
Single base mutation in the type III procollagen gene that converts the codon for glycine 883 to aspartate in a mild variant of Ehlers-Danlos syndrome IV.III型前胶原基因中的单碱基突变,该突变在埃勒斯-当洛综合征IV型的一个轻度变异型中将第883位甘氨酸密码子转变为天冬氨酸。
J Biol Chem. 1989 Nov 15;264(32):19313-7.

引用本文的文献

1
The triple helix of collagens - an ancient protein structure that enabled animal multicellularity and tissue evolution.胶原的三螺旋结构——一种古老的蛋白质结构,使动物多细胞性和组织进化成为可能。
J Cell Sci. 2018 Apr 9;131(7):jcs203950. doi: 10.1242/jcs.203950.
2
Inductive Effects on the Energetics of Prolyl Peptide Bond Isomerization: Implications for Collagen Folding and Stability.脯氨酰肽键异构化能量学的诱导效应:对胶原蛋白折叠和稳定性的影响。
J Am Chem Soc. 1996;118(49):12261-12266. doi: 10.1021/ja9623119.
3
Structure of cDNA clones coding for the entire prepro alpha 1 (III) chain of human type III procollagen. Differences in protein structure from type I procollagen and conservation of codon preferences.
编码人III型前胶原完整前原α1(III)链的cDNA克隆结构。与I型前胶原蛋白质结构的差异及密码子偏好性的保守性。
Biochem J. 1989 Jun 1;260(2):509-16. doi: 10.1042/bj2600509.
4
Distinct biochemical phenotypes predict clinical severity in nonlethal variants of osteogenesis imperfecta.不同的生化表型可预测成骨不全非致死性变异的临床严重程度。
Am J Hum Genet. 1990 May;46(5):975-82.
5
Characterization of a type I collagen alpha 2(I) glycine-586 to valine substitution in osteogenesis imperfecta type IV. Detection of the mutation and prenatal diagnosis by a chemical cleavage method.IV型成骨不全中I型胶原α2(I)链甘氨酸586突变为缬氨酸的特征分析。通过化学切割法检测该突变及进行产前诊断。
Biochem J. 1991 Jun 15;276 ( Pt 3)(Pt 3):765-70. doi: 10.1042/bj2760765.
6
Osteogenesis imperfecta: translation of mutation to phenotype.成骨不全症:从突变到表型的转化
J Med Genet. 1991 Jul;28(7):433-42. doi: 10.1136/jmg.28.7.433.
7
Dominant mutations in familial lethal and severe osteogenesis imperfecta.家族性致死性和严重成骨不全症中的显性突变。
Hum Genet. 1991 Jul;87(3):297-301. doi: 10.1007/BF00200907.
8
Substitution of cysteine for glycine at residue 415 of one allele of the alpha 1(I) chain of type I procollagen in type III/IV osteogenesis imperfecta.在III/IV型成骨不全症中,I型前胶原α1(I)链的一个等位基因的第415位残基处,半胱氨酸取代了甘氨酸。
J Med Genet. 1991 Nov;28(11):757-64. doi: 10.1136/jmg.28.11.757.