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39个牙釉质发育不全家族的目标基因分析。

Target gene analyses of 39 amelogenesis imperfecta kindreds.

作者信息

Chan Hui-Chen, Estrella Ninna M R P, Milkovich Rachel N, Kim Jung-Wook, Simmer James P, Hu Jan C-C

机构信息

Department of Biologic and Materials Sciences, University of Michigan School of Dentistry, Ann Arbor, MI 48108, USA.

出版信息

Eur J Oral Sci. 2011 Dec;119 Suppl 1(Suppl 1):311-23. doi: 10.1111/j.1600-0722.2011.00857.x.

DOI:10.1111/j.1600-0722.2011.00857.x
PMID:22243262
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3292789/
Abstract

Previously, mutational analyses identified six disease-causing mutations in 24 amelogenesis imperfecta (AI) kindreds. We have since expanded the number of AI kindreds to 39, and performed mutation analyses covering the coding exons and adjoining intron sequences for the six proven AI candidate genes [amelogenin (AMELX), enamelin (ENAM), family with sequence similarity 83, member H (FAM83H), WD repeat containing domain 72 (WDR72), enamelysin (MMP20), and kallikrein-related peptidase 4 (KLK4)] and for ameloblastin (AMBN) (a suspected candidate gene). All four of the X-linked AI families (100%) had disease-causing mutations in AMELX, suggesting that AMELX is the only gene involved in the aetiology of X-linked AI. Eighteen families showed an autosomal-dominant pattern of inheritance. Disease-causing mutations were identified in 12 (67%): eight in FAM83H, and four in ENAM. No FAM83H coding-region or splice-junction mutations were identified in three probands with autosomal-dominant hypocalcification AI (ADHCAI), suggesting that a second gene may contribute to the aetiology of ADHCAI. Six families showed an autosomal-recessive pattern of inheritance, and disease-causing mutations were identified in three (50%): two in MMP20, and one in WDR72. No disease-causing mutations were found in 11 families with only one affected member. We conclude that mutation analyses of the current candidate genes for AI have about a 50% chance of identifying the disease-causing mutation in a given kindred.

摘要

此前,突变分析在24个牙釉质发育不全(AI)家族中鉴定出6种致病突变。此后,我们将AI家族的数量增加到39个,并对6个已证实的AI候选基因[釉原蛋白(AMELX)、釉蛋白(ENAM)、序列相似性家族83成员H(FAM83H)、含WD重复结构域72(WDR72)、釉质溶解素(MMP20)和激肽释放酶相关肽酶4(KLK4)]以及成釉蛋白(AMBN)(一个疑似候选基因)的编码外显子和相邻内含子序列进行了突变分析。所有4个X连锁AI家族(100%)在AMELX中都有致病突变,这表明AMELX是参与X连锁AI病因的唯一基因。18个家族呈现常染色体显性遗传模式。在12个家族(67%)中鉴定出致病突变:8个在FAM83H中,4个在ENAM中。在3名常染色体显性低钙化性AI(ADHCAI)先证者中未鉴定出FAM83H编码区或剪接连接突变,这表明可能有第二个基因参与ADHCAI的病因。6个家族呈现常染色体隐性遗传模式,在3个家族(50%)中鉴定出致病突变:2个在MMP20中,1个在WDR72中。在11个只有一名患病成员的家族中未发现致病突变。我们得出结论,对当前AI候选基因进行突变分析,在给定家族中识别致病突变的几率约为50%。

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本文引用的文献

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A novel mutation in the AMELX gene and multiple crown resorptions.AMELX基因中的一种新突变与多发性牙冠吸收。
Eur J Oral Sci. 2011 Dec;119 Suppl 1:324-8. doi: 10.1111/j.1600-0722.2011.00858.x.
2
Amelogenesis imperfecta: genotype-phenotype studies in 71 families.牙釉质发育不全:71 个家系的基因型-表型研究。
Cells Tissues Organs. 2011;194(2-4):279-83. doi: 10.1159/000324339. Epub 2011 May 19.
3
Whole-Exome sequencing identifies FAM20A mutations as a cause of amelogenesis imperfecta and gingival hyperplasia syndrome.全外显子组测序鉴定 FAM20A 突变是牙釉质不全和牙龈增生综合征的致病原因。
FAM20A和WDR72基因的截短变异是四个巴基斯坦家庭常染色体隐性遗传性牙釉质发育不全的病因。
Biochem Genet. 2025 Mar 19. doi: 10.1007/s10528-025-11087-2.
4
Novel Intragenic and Genomic Variants Highlight the Phenotypic Variability in -Related Disease.新型基因内和基因组变异凸显了-相关疾病的表型变异性。
Genes (Basel). 2024 Dec 20;15(12):1636. doi: 10.3390/genes15121636.
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Mutations and Genotype-Phenotype Correlation in X-Linked Amelogenesis Imperfecta.X 连锁型牙釉质发育不全的突变与基因型-表型相关性。
Int J Mol Sci. 2024 Jun 1;25(11):6132. doi: 10.3390/ijms25116132.
6
MEMO1 Is Required for Ameloblast Maturation and Functional Enamel Formation.成釉细胞成熟和功能性牙釉质形成需要MEMO1。
J Dent Res. 2023 Oct;102(11):1261-1271. doi: 10.1177/00220345231185758. Epub 2023 Jul 20.
7
Novel Mutations Causing Hypomaturation Amelogenesis Imperfecta.导致低成熟型牙釉质发育不全的新型突变
J Pers Med. 2023 Feb 14;13(2):326. doi: 10.3390/jpm13020326.
8
Amelogenesis imperfecta in a Chinese family resulting from a FAM83H variation and the effect of FAM83H on the secretion of enamel matrix proteins.一个中国家庭中由FAM83H变异导致的牙釉质发育不全以及FAM83H对釉基质蛋白分泌的影响。
Clin Oral Investig. 2023 Mar;27(3):1289-1299. doi: 10.1007/s00784-022-04763-9. Epub 2022 Nov 1.
9
An Intron c.103-3T>C Variant of the AMELX Gene Causes Combined Hypomineralized and Hypoplastic Type of Amelogenesis Imperfecta: Case Series and Review of the Literature.AMELX 基因内含子 c.103-3T>C 变异导致的联合性牙本质发育不全和牙本质形成不全型:病例系列及文献复习。
Genes (Basel). 2022 Jul 18;13(7):1272. doi: 10.3390/genes13071272.
10
Identification of a Novel Mutation and Management of Hypocalcified Amelogenesis Imperfecta in Early Childhood.幼儿期低钙化型牙釉质发育不全的新型突变鉴定与管理
Children (Basel). 2022 Mar 18;9(3):429. doi: 10.3390/children9030429.
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Why does enamel in Klk4-null mice break above the dentino-enamel junction?为什么 Klk4 基因敲除小鼠的牙釉质会在牙本质-釉质交界处之上破裂?
Cells Tissues Organs. 2011;194(2-4):211-5. doi: 10.1159/000324260. Epub 2011 May 6.
5
Effect of kallikrein 4 loss on enamel mineralization: comparison with mice lacking matrix metalloproteinase 20.KLK4 缺失对釉质矿化的影响:与 MMP20 缺失小鼠的比较。
J Biol Chem. 2011 May 20;286(20):18149-60. doi: 10.1074/jbc.M110.194258. Epub 2011 Mar 23.
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Amelogenesis imperfecta and nephrocalcinosis syndrome: a case report and review of the literature.牙釉质不全和肾钙质沉着症综合征:病例报告及文献复习。
Nephron Physiol. 2011;118(3):p62-5. doi: 10.1159/000322828. Epub 2011 Jan 7.
7
Hypomaturation amelogenesis imperfecta due to WDR72 mutations: a novel mutation and ultrastructural analyses of deciduous teeth.WDR72 基因突变导致的低成熟型牙本质生成不全:一种新的突变及乳牙的超微结构分析。
Cells Tissues Organs. 2011;194(1):60-6. doi: 10.1159/000322036. Epub 2010 Dec 29.
8
FAM83H mutations cause ADHCAI and alter intracellular protein localization.FAM83H 突变导致 ADHCAI,并改变细胞内蛋白质定位。
J Dent Res. 2011 Mar;90(3):377-81. doi: 10.1177/0022034510389177. Epub 2010 Nov 30.
9
Novel WDR72 mutation and cytoplasmic localization.新型 WDR72 突变及细胞质定位。
J Dent Res. 2010 Dec;89(12):1378-82. doi: 10.1177/0022034510382117. Epub 2010 Oct 11.
10
Pseudogenization of the tooth gene enamelysin (MMP20) in the common ancestor of extant baleen whales.现存须鲸共同祖先中牙齿基因 enamelysin(MMP20)的假基因化。
Proc Biol Sci. 2011 Apr 7;278(1708):993-1002. doi: 10.1098/rspb.2010.1280. Epub 2010 Sep 22.