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奥匹兹综合征基因产物(midin)的功能特性:关于其在整个细胞周期中同型二聚化及与微管结合的证据

Functional characterization of the Opitz syndrome gene product (midin): evidence for homodimerization and association with microtubules throughout the cell cycle.

作者信息

Cainarca S, Messali S, Ballabio A, Meroni G

机构信息

Telethon Institute of Genetics and Medicine (TIGEM), San Raffaele Biomedical Science Park, Via Olgettina 58, Milan, Italy.

出版信息

Hum Mol Genet. 1999 Aug;8(8):1387-96. doi: 10.1093/hmg/8.8.1387.

DOI:10.1093/hmg/8.8.1387
PMID:10400985
Abstract

Opitz syndrome (OS) is a multiple congenital anomaly manifested by abnormal closure of midline structures. The gene responsible for the X-linked form of this disease, MID1, encodes a protein (midin) that contains a RING, two B-boxes, a coiled-coil (the so-called tripartite motif) and an RFP-like domain. The tripartite motif is characteristic of a family of proteins, named the B-box family, involved in cell proliferation and development. Since the subcellular compartmentalization and the ability to form multiprotein structures both appear to be crucial for the function of this family of proteins, we have studied these properties on the wild-type and mutated forms of midin. We found that endogenous midin is associated with microtubules throughout the cell cycle, co-localizing with cytoplasmic fibres in interphase and with the mitotic spindle and midbodies during mitosis and cytokinesis. Immunoprecipitation experiments demonstrated the ability of the tripartite motif to mediate midin homodimerization, consistent with the evidence, obtained by gel filtration analysis, that midin exists in the form of large protein complexes. Functional characterization of altered forms of midin, resulting from mutations found in OS patients, revealed that association with microtubules is compromised, while the ability to homodimerize and form multiprotein complexes is retained. We suggest that midin is involved in the formation of multiprotein structures acting as anchor points to microtubules and that impaired association with these cytoskeletal structures causes OS developmental defects.

摘要

奥皮茨综合征(OS)是一种多系统先天性畸形疾病,表现为中线结构异常闭合。导致该疾病X连锁型的基因MID1编码一种蛋白质(midin),该蛋白质含有一个RING结构域、两个B-盒结构域、一个卷曲螺旋结构域(即所谓的三联基序)和一个类RFP结构域。三联基序是一类名为B-盒家族的蛋白质所特有的,该家族蛋白质参与细胞增殖和发育过程。由于亚细胞区室化以及形成多蛋白结构的能力似乎对该家族蛋白质的功能都至关重要,因此我们研究了midin野生型和突变型的这些特性。我们发现,内源性midin在整个细胞周期中都与微管相关联,在间期与细胞质纤维共定位,在有丝分裂和胞质分裂期间与有丝分裂纺锤体和中间体共定位。免疫沉淀实验证明了三联基序介导midin同源二聚化的能力,这与凝胶过滤分析得出的证据一致,即midin以大蛋白复合物的形式存在。对OS患者中发现的突变所导致的midin改变形式进行功能表征,结果显示其与微管的关联受损,而同源二聚化和形成多蛋白复合物的能力得以保留。我们认为,midin参与形成作为微管锚定点的多蛋白结构,并且与这些细胞骨架结构的关联受损会导致OS发育缺陷。

相似文献

1
Functional characterization of the Opitz syndrome gene product (midin): evidence for homodimerization and association with microtubules throughout the cell cycle.奥匹兹综合征基因产物(midin)的功能特性:关于其在整个细胞周期中同型二聚化及与微管结合的证据
Hum Mol Genet. 1999 Aug;8(8):1387-96. doi: 10.1093/hmg/8.8.1387.
2
MID1 and MID2 homo- and heterodimerise to tether the rapamycin-sensitive PP2A regulatory subunit, alpha 4, to microtubules: implications for the clinical variability of X-linked Opitz GBBB syndrome and other developmental disorders.MID1和MID2可发生同源和异源二聚化,将雷帕霉素敏感的蛋白磷酸酶2A调节亚基α4与微管相连:对X连锁Opitz GBBB综合征及其他发育障碍临床变异性的影响。
BMC Cell Biol. 2002;3:1. doi: 10.1186/1471-2121-3-1. Epub 2002 Jan 4.
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The Opitz syndrome gene product, MID1, associates with microtubules.奥匹兹综合征基因产物MID1与微管相关联。
Proc Natl Acad Sci U S A. 1999 Mar 16;96(6):2794-9. doi: 10.1073/pnas.96.6.2794.
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MID2, a homologue of the Opitz syndrome gene MID1: similarities in subcellular localization and differences in expression during development.MID2,Opitz综合征基因MID1的同源物:亚细胞定位的相似性及发育过程中表达的差异
Hum Mol Genet. 1999 Aug;8(8):1397-407. doi: 10.1093/hmg/8.8.1397.
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Mig12, a novel Opitz syndrome gene product partner, is expressed in the embryonic ventral midline and co-operates with Mid1 to bundle and stabilize microtubules.Mig12是一种新型的Opitz综合征基因产物伴侣,在胚胎腹侧中线表达,并与Mid1协同作用,使微管成束并稳定微管。
BMC Cell Biol. 2004 Feb 29;5:9. doi: 10.1186/1471-2121-5-9.
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A structure-function study of MID1 mutations associated with a mild Opitz phenotype.与轻度奥匹兹综合征表型相关的MID1突变的结构-功能研究。
Mol Genet Metab. 2006 Mar;87(3):198-203. doi: 10.1016/j.ymgme.2005.10.014.
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FXY2/MID2, a gene related to the X-linked Opitz syndrome gene FXY/MID1, maps to Xq22 and encodes a FNIII domain-containing protein that associates with microtubules.FXY2/MID2是一个与X连锁的Opitz综合征基因FXY/MID1相关的基因,定位于Xq22,编码一种与微管相关的含FNIII结构域的蛋白质。
Genomics. 1999 Dec 15;62(3):385-94. doi: 10.1006/geno.1999.6043.
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Phosphorylation and microtubule association of the Opitz syndrome protein mid-1 is regulated by protein phosphatase 2A via binding to the regulatory subunit alpha 4.Opitz综合征蛋白mid-1的磷酸化和微管结合由蛋白磷酸酶2A通过与调节亚基α4结合来调控。
Proc Natl Acad Sci U S A. 2001 Jun 5;98(12):6650-5. doi: 10.1073/pnas.111154698. Epub 2001 May 22.
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Solution structure of the microtubule-targeting COS domain of MID1.MID1的微管靶向COS结构域的溶液结构
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New mutations in MID1 provide support for loss of function as the cause of X-linked Opitz syndrome.MID1基因中的新突变支持功能丧失是X连锁Opitz综合征病因的观点。
Hum Mol Genet. 2000 Oct 12;9(17):2553-62. doi: 10.1093/hmg/9.17.2553.

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