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一种含有低密度脂蛋白受体元件的新型嵌合蛋白在人类和鸡中高度保守。

A novel mosaic protein containing LDL receptor elements is highly conserved in humans and chickens.

作者信息

Mörwald S, Yamazaki H, Bujo H, Kusunoki J, Kanaki T, Seimiya K, Morisaki N, Nimpf J, Schneider W J, Saito Y

机构信息

Department of Molecular Genetics, Biocenter and University of Vienna, Austria.

出版信息

Arterioscler Thromb Vasc Biol. 1997 May;17(5):996-1002. doi: 10.1161/01.atv.17.5.996.

Abstract

Certain receptors belonging to the LDL receptor (LDLR) gene family appear to constitute a newly identified branch whose members are expressed in brain, in addition to other tissues. In support of this concept, we have now discovered the expression and delineated the molecular structures of a representative of this emerging branch from two such diverse species as human and chicken. This membrane receptor, called LR11 and thus far only known to exist in the rabbit, is a complex seven-domain mosaic protein containing, among other structural elements, a cluster of 11 LDLR ligand-binding repeats and a domain with homology to VPS10, a yeast receptor for vacuolar protein sorting. Cytoplasmic signature sequences define the receptor as competent for endocytosis. The most striking properties of LR11s are their (1) high degree of structural conservation (>80% identity among mammals and birds), with 100% identity in the membrane-spanning and cytoplasmic domains of rabbit and human; (2) lack of regulation by cholesterol and estrogen; and (3) expression in brain. The features of LR11 suggest important roles in intercellular and intracellular ligand transport processes, some of which it may share with other brain-specific LDLR family members.

摘要

某些属于低密度脂蛋白受体(LDLR)基因家族的受体似乎构成了一个新发现的分支,其成员除了在其他组织中表达外,在大脑中也有表达。为支持这一概念,我们现在已经发现了这个新兴分支的一个代表在人类和鸡这两种差异极大的物种中的表达情况,并描绘了其分子结构。这种膜受体称为LR11,到目前为止仅在兔子中发现,它是一种复杂的七结构域镶嵌蛋白,除其他结构元件外,还包含一簇11个低密度脂蛋白受体配体结合重复序列以及一个与酵母液泡蛋白分选受体VPS10具有同源性的结构域。细胞质特征序列将该受体定义为具有内吞作用能力。LR11最显著的特性是:(1)高度的结构保守性(在哺乳动物和鸟类中同一性>80%),兔子和人类的跨膜和细胞质结构域具有100%的同一性;(2)不受胆固醇和雌激素的调节;(3)在大脑中表达。LR11的这些特征表明它在细胞间和细胞内配体转运过程中发挥重要作用,其中一些作用可能与其他脑特异性低密度脂蛋白受体家族成员相同。

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