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非综合征性裂手/裂足畸形中10q24的基因组重排。

Genomic rearrangement at 10q24 in non-syndromic split-hand/split-foot malformation.

作者信息

Kano Hiroki, Kurosawa Kenji, Horii Emiko, Ikegawa Shiro, Yoshikawa Hideki, Kurahashi Hiroki, Toda Tatsushi

机构信息

Division of Clinical Genetics, Department of Medical Genetics, Osaka University Graduate School of Medicine, 2-2-B9, Yamadaoka, Suita, 565-0871, Japan.

出版信息

Hum Genet. 2005 Dec;118(3-4):477-83. doi: 10.1007/s00439-005-0074-0. Epub 2005 Oct 19.


DOI:10.1007/s00439-005-0074-0
PMID:16235095
Abstract

Split-hand/split-foot malformation (SHFM) is a congenital limb malformation characterized by a median cleft of hand and/or foot due to the absence of central rays. Five loci for syndromic and non-syndromic SHFM, termed SHFM1-5, have been mapped to date. Recently, a 0.5 Mb tandem genomic duplication was found at chromosome 10q24 in SHFM3 families. To refine the minimum duplicated region and to further characterize the SHFM3 locus, we screened 28 non-syndromic SHFM families for tandem genomic duplication of 10q24 by Southern blot and sequence analysis of the dactylin gene. Of 28 families, only two showed genomic rearrangements. Representative patients from the two families exhibit typical SHFM, with symmetrically affected hands and feet. One patient is a familial case with a 511,661 bp tandem duplication, whereas the second is a sporadic case arising from a de novo, 447,338 bp duplication of maternal origin. The smaller duplication in the second patient contained the LBX1, BTRC, POLL, and DPCD genes and a disrupted extra copy of the dactylin gene, and was nearly identical to the smallest known duplicated region of SHFM3. Our results indicate that genomic rearrangement of SHFM3 is rare among non-syndromic SHFM patients and emphasize the importance of screening for genomic rearrangements even in sporadic cases of SHFM.

摘要

裂手/裂足畸形(SHFM)是一种先天性肢体畸形,其特征是由于中央射线缺失导致手和/或足出现正中裂。迄今为止,已确定了5个与综合征性和非综合征性SHFM相关的基因座,分别称为SHFM1 - 5。最近,在SHFM3家系中发现10号染色体q24区域存在一个0.5 Mb的串联基因组重复。为了精确确定最小重复区域并进一步表征SHFM3基因座,我们通过Southern印迹法和指蛋白基因的序列分析,对28个非综合征性SHFM家系进行了10q24串联基因组重复的筛查。在这28个家系中,只有两个显示出基因组重排。这两个家系的代表性患者表现出典型的SHFM,手和足均对称受累。一名患者为家族性病例,存在511,661 bp的串联重复,而另一名为散发病例,源于母系来源的新生447,338 bp重复。第二名患者中较小的重复包含LBX1、BTRC、POLL和DPCD基因以及一个指蛋白基因的额外拷贝中断,并且与已知最小的SHFM3重复区域几乎相同。我们的结果表明,SHFM3的基因组重排在非综合征性SHFM患者中很少见,并强调即使在SHFM散发病例中进行基因组重排筛查的重要性。

相似文献

[1]
Genomic rearrangement at 10q24 in non-syndromic split-hand/split-foot malformation.

Hum Genet. 2005-12

[2]
Frequency of genomic rearrangements involving the SHFM3 locus at chromosome 10q24 in syndromic and non-syndromic split-hand/foot malformation.

Am J Med Genet A. 2006-7-1

[3]
Distal limb deficiencies, micrognathia syndrome, and syndromic forms of split hand foot malformation (SHFM) are caused by chromosome 10q genomic rearrangements.

J Med Genet. 2009-7-6

[4]
[A DNA duplication at chromosome 10q24.3 is associated with split-hand split-foot malformation in a Chinese family].

Zhonghua Yi Xue Za Zhi. 2006-3-14

[5]
Split-hand/split-foot malformation 3 (SHFM3) at 10q24, development of rapid diagnostic methods and gene expression from the region.

Am J Med Genet A. 2006-7-1

[6]
Discontinuous microduplications at chromosome 10q24.31 identified in a Chinese family with split hand and foot malformation.

BMC Med Genet. 2013-4-18

[7]
A genomic rearrangement resulting in a tandem duplication is associated with split hand-split foot malformation 3 (SHFM3) at 10q24.

Hum Mol Genet. 2003-8-15

[8]
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[9]
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[10]
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引用本文的文献

[1]
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Nat Commun. 2023-3-17

[2]
Duplication of 10q24 locus: broadening the clinical and radiological spectrum.

Eur J Hum Genet. 2019-1-8

[3]
Copy-number variants and candidate gene mutations in isolated split hand/foot malformation.

J Hum Genet. 2017-5-25

[4]
Identification of Critical Region Responsible for Split Hand/Foot Malformation Type 3 (SHFM3) Phenotype through Systematic Review of Literature and Mapping of Breakpoints Using Microarray Data.

Microarrays (Basel). 2015-12-24

[5]
Japanese founder duplications/triplications involving BHLHA9 are associated with split-hand/foot malformation with or without long bone deficiency and Gollop-Wolfgang complex.

Orphanet J Rare Dis. 2014-10-21

[6]
Exome sequencing reveals a heterozygous DLX5 mutation in a Chinese family with autosomal-dominant split-hand/foot malformation.

Eur J Hum Genet. 2014-9

[7]
Discontinuous microduplications at chromosome 10q24.31 identified in a Chinese family with split hand and foot malformation.

BMC Med Genet. 2013-4-18

[8]
A novel locus for split-hand/foot malformation associated with tibial hemimelia (SHFLD syndrome) maps to chromosome region 17p13.1-17p13.3.

Hum Genet. 2008-7

[9]
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BMC Biochem. 2007-11-22

[10]
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本文引用的文献

[1]
A genomic rearrangement resulting in a tandem duplication is associated with split hand-split foot malformation 3 (SHFM3) at 10q24.

Hum Mol Genet. 2003-8-15

[2]
A 117-kb microdeletion removing HOXD9-HOXD13 and EVX2 causes synpolydactyly.

Am J Hum Genet. 2002-2

[3]
p63 Gene mutations in eec syndrome, limb-mammary syndrome, and isolated split hand-split foot malformation suggest a genotype-phenotype correlation.

Am J Hum Genet. 2001-9

[4]
Split-hand/split-foot malformation is caused by mutations in the p63 gene on 3q27.

Am J Hum Genet. 2000-7

[5]
Heterozygous germline mutations in the p53 homolog p63 are the cause of EEC syndrome.

Cell. 1999-10-15

[6]
A novel member of the F-box/WD40 gene family, encoding dactylin, is disrupted in the mouse dactylaplasia mutant.

Nat Genet. 1999-9

[7]
A novel human gene encoding an F-box/WD40 containing protein maps in the SHFM3 critical region on 10q24.

Biochem Biophys Res Commun. 1999-7-22

[8]
Fine mapping of the split-hand/split-foot locus (SHFM3) at 10q24: evidence for anticipation and segregation distortion.

Am J Hum Genet. 1999-6

[9]
Refined mapping of a gene for split hand-split foot malformation (SHFM3) on chromosome 10q25.

J Med Genet. 1996-12

[10]
A split hand-split foot (SHFM3) gene is located at 10q24-->25.

Am J Med Genet. 1996-4-24

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