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淀粉样前体蛋白(APP)基因家族。可变剪接产生功能相关的异构体。

APP gene family. Alternative splicing generates functionally related isoforms.

作者信息

Sandbrink R, Masters C L, Beyreuther K

机构信息

Zentrum für Molekulare Biologie Heidelberg (ZMBH), University of Heidelberg, Germany.

出版信息

Ann N Y Acad Sci. 1996 Jan 17;777:281-7. doi: 10.1111/j.1749-6632.1996.tb34433.x.

Abstract

The Alzheimer's beta A4-amyloid protein precursor (APP) and the APP-like proteins (APLPs) are transmembrane glycoproteins with a similar modular domain structure. APP exists in 8 isoforms generated by alternative splicing of exons 7, 8, and 15, of which the L-APP mRNAs lacking exon 15 are ubiquitously expressed in rat tissues but not in neurons. Rat APLP2, the nearest relative of APP, is similarly expressed in 4 different isoforms due to alternative splicing of inserts encoding a Kunitz protease inhibitor domain (KPI, homologous to exon 7 of APP) and a divergent region of 12 amino acids on the NH2-terminal side of the transmembrane domain (12 aa exon). KPI-APLP2 transcripts are highly expressed in neurons, in contrast to KPI-APPs, while L-APLP2 mRNA isoforms lacking the 12 aa exon are predominantly expressed in non-neuronal rat tissues, similar to L-APPs. Further examination of the divergent domains in APP and APLP2 harboring the similarly alternatively spliced APP exon 15 and the 12 aa exon of APLP2 revealed some structural similarities of the amino acid sequences and the predicted secondary structures. In both L-APLP2 and L-APP, a putative xylosyl-transferase recognition site for chondroitin sulfate glycosaminoglycan attachment is present that is interrupted in APP and APLP2 isoforms expressing APP exon 15 or the 12 aa exon of APLP2. Thus, a related function of the divergent domains and the corresponding alternatively spliced APP and APLP2 isoforms in regulation of the binding properties of the ectodomain is suggested. Additionally, beta-secretase cleavage of APP might be sterically hindered selectively in proteoglycan L-APP but not in APP lacking the proteoglycan attachment site. Neurons which have a uniquely low portion of L-APP and high content of APP might therefore be especially susceptible to beta A4-protein liberation. This could explain the selective vulnerability of neurons that is observed in Alzheimer's disease.

摘要

阿尔茨海默病β A4-淀粉样蛋白前体(APP)和类APP蛋白(APLPs)是具有相似模块化结构域结构的跨膜糖蛋白。APP存在8种由外显子7、8和15选择性剪接产生的异构体,其中缺少外显子15的L-APP mRNA在大鼠组织中普遍表达,但在神经元中不表达。大鼠APLP2是APP最接近的亲属,由于编码库尼茨蛋白酶抑制剂结构域(KPI,与APP的外显子7同源)和跨膜结构域NH2端侧12个氨基酸的不同区域(12个氨基酸外显子)的插入片段的选择性剪接,同样以4种不同的异构体形式表达。与KPI-APP相反,KPI-APLP2转录本在神经元中高度表达,而缺少12个氨基酸外显子的L-APLP2 mRNA异构体主要在大鼠非神经元组织中表达,类似于L-APP。对APP和APLP2中包含类似选择性剪接的APP外显子15和APLP2的12个氨基酸外显子的不同结构域的进一步研究揭示了氨基酸序列和预测二级结构的一些结构相似性。在L-APLP2和L-APP中都存在一个假定的用于硫酸软骨素糖胺聚糖附着的木糖基转移酶识别位点,该位点在表达APP外显子15或APLP2的12个氨基酸外显子的APP和APLP2异构体中被打断。因此,提示不同结构域以及相应的选择性剪接的APP和APLP2异构体在调节胞外域结合特性方面具有相关功能。此外,APP的β-分泌酶切割在蛋白聚糖L-APP中可能受到空间位阻的选择性阻碍,但在缺乏蛋白聚糖附着位点的APP中则不会。因此,L-APP比例独特地低而APP含量高的神经元可能特别容易受到β A4蛋白释放的影响。这可以解释在阿尔茨海默病中观察到的神经元的选择性易损性。

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