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γ-分泌酶亚基Pen-2的拓扑结构再探讨:折返环和单次跨膜结构域的证据

The topology of pen-2, a γ-secretase subunit, revisited: evidence for a reentrant loop and a single pass transmembrane domain.

作者信息

Zhang Xulun, Yu Chunjiang J, Sisodia Sangram S

机构信息

Department of Neurobiology, The University of Chicago, 947 E. 58th St. MC0928, Chicago, Il 60637, USA.

Department of Neurobiology, The University of Chicago, 1128 S. Eastside Ave, Oak Park, Chicago, Il 60304, USA.

出版信息

Mol Neurodegener. 2015 Aug 22;10:39. doi: 10.1186/s13024-015-0037-4.

Abstract

BACKGROUND

The γ-secretase complex, composed of transmembrane proteins termed presenilin (PS), anterior pharynx defective (APH), nicastrin (NCT), and presenilin enhancer-2 (Pen-2) catalyzes intramembranous hydrolysis of a variety of Type I membrane protein substrates. In order to understand aspects of subunit assembly, interactions, dynamics and catalysis, it is essential to clarify the membrane topology of each polypeptide. Hydophathicity plots predict that the 101 amino acid Pen-2 molecule has two hydrophobic domains (HP1 and HP2) that may serve as transmembrane spanning domains. Earlier reports indicated that transiently overexpressed Pen-2 uses these two hydrophobic domains as transmembrane helices that generates a "U-shaped" hairpin topology with both amino- (N-) and carboxyl-(C-) termini facing the lumen. In this report, we have reexamined the topology of endogenous Pen-2 and Pen-2 chimeras that are stably expressed in mammalian cells, and have assessed the function of these molecules in rescuing γ-secretase activity in Pen-2-deficient fibroblasts.

RESULTS

We confirm that the Pen-2 C-terminus is lumenal, but the N-terminus of Pen-2 is exposed to the cytoplasm, thus indicating that HP1 does not traverse the lipid bilayer as a transmembrane domain. Domain swapping studies reveal the importance of specific regions within the first hydrophobic domain of Pen-2 that are critical for generating the topology that is a prerequisite for mediating PS1 endoproteolysis and γ-secretase activity. Finally, we report that the first fourteen amino acids of the Pen-2 HP1 are required for γ-secretase activity.

CONCLUSIONS

We propose that the first hydrophobic domain of Pen-2 forms a structure similar to a reentrant loop while the second hydrophobic domain spans the lipid bilayer.

摘要

背景

γ-分泌酶复合物由称为早老素(PS)、咽前缺陷蛋白(APH)、尼卡斯特林(NCT)和早老素增强子2(Pen-2)的跨膜蛋白组成,可催化多种I型膜蛋白底物的膜内水解。为了了解亚基组装、相互作用、动力学和催化方面的情况,阐明每个多肽的膜拓扑结构至关重要。亲水性图谱预测,101个氨基酸的Pen-2分子有两个疏水结构域(HP1和HP2),可能作为跨膜结构域。早期报道表明,瞬时过表达的Pen-2利用这两个疏水结构域作为跨膜螺旋,产生一个“U形”发夹拓扑结构,其氨基(N-)和羧基(C-)末端均面向管腔。在本报告中,我们重新研究了在哺乳动物细胞中稳定表达的内源性Pen-2和Pen-2嵌合体的拓扑结构,并评估了这些分子在挽救Pen-2缺陷成纤维细胞中γ-分泌酶活性方面的功能。

结果

我们证实Pen-2的C末端位于管腔内,但Pen-2的N末端暴露于细胞质中,因此表明HP1不作为跨膜结构域穿过脂质双层。结构域交换研究揭示了Pen-2第一个疏水结构域内特定区域的重要性,这些区域对于产生介导PS1内蛋白水解和γ-分泌酶活性的拓扑结构至关重要。最后,我们报告Pen-2 HP1的前14个氨基酸是γ-分泌酶活性所必需的。

结论

我们提出Pen-2的第一个疏水结构域形成类似于折返环的结构,而第二个疏水结构域跨越脂质双层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03aa/4546279/f3ca5275afd4/13024_2015_37_Fig1_HTML.jpg

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