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SIX3的序列与定位,SIX3是一种在人眼中表达的同源异型框基因。

Sequence and location of SIX3, a homeobox gene expressed in the human eye.

作者信息

Leppert G S, Yang J M, Sundin O H

机构信息

Wilmer Ophthalmological Institute, The Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.

出版信息

Ophthalmic Genet. 1999 Mar;20(1):7-21. doi: 10.1076/opge.20.1.7.2298.

Abstract

Mouse Six3 is a homeobox gene expressed almost exclusively in the developing retina, lens, hypothalamus, and pituitary. It belongs to the same family as sine oculis, a Drosophila regulatory gene that encodes a transcription factor essential for eye development. The optix gene is its closest known Drosophila homologue, with a homeodomain that is 95% identical in sequence to the Six3 protein. We have isolated the homologous human gene, SIX3, which is expressed in the adult retina and encodes a 332 amino acid protein that is 98% identical to its mouse counterpart. The SIX3 protein coding region is interrupted by a single intron located just downstream of the homeobox. A surprising feature of the SIX3 gene is a 533 nucleotide 5' untranslated region that contains long polypyrimidine tracts with 96% identity to mouse Six3. We have used in-situ hybridization to map SIX3 to 2p21-p22, a site that is syntenic with the Six3 region of mouse chromosome 17. Large heterozygous deletions associated with human holoprosencephaly type 2 have been previously mapped to 2p21, opening the possibility that SIX3 could be involved in the development of midline structures of the head. Alternatively, the expression pattern of mouse Six3 suggests that human SIX3 could be involved in disorders of eye and pituitary development.

摘要

小鼠Six3是一种同源异型盒基因,几乎只在发育中的视网膜、晶状体、下丘脑和垂体中表达。它与果蝇的无眼基因属于同一家族,无眼基因是一种果蝇调控基因,编码一种对眼睛发育至关重要的转录因子。optix基因是其已知最接近的果蝇同源物,其同源结构域与Six3蛋白的序列有95%的同一性。我们已经分离出了同源的人类基因SIX3,它在成人视网膜中表达,编码一种332个氨基酸的蛋白质,与小鼠对应物有98%的同一性。SIX3蛋白编码区被一个位于同源异型盒下游的单一内含子打断。SIX3基因的一个惊人特征是其5'非翻译区有533个核苷酸,其中包含长的聚嘧啶序列,与小鼠Six3有96%的同一性。我们利用原位杂交将SIX3定位到2p21-p22,该位点与小鼠17号染色体的Six3区域是同线的。先前已将与人类2型全前脑畸形相关的大的杂合缺失定位到2p21,这使得SIX3有可能参与头部中线结构的发育。或者,小鼠Six3的表达模式表明人类SIX3可能参与眼睛和垂体发育的疾病。

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