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Topology and Membrane Anchoring of the Lysosomal Storage Disease-Related Protein CLN5

机译:溶酶体贮积病相关蛋白CLN5的拓扑学和膜锚定

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摘要

One late infantile variant of the neurodegenerative disease neuronal ceroid lipofuscinosis (NCL) is caused by a mutation in the CLN5 gene. CLN5 encodes a lysosomal glycoprotein whose structure and function have not yet been clearly defined. In the present study, we used epitope-tagged CLN5 to determine the topology and solubility of the CLN5 protein. Our results indicated that CLN5 is synthesized as a type II transmembrane (TM) glycoprotein with a cytoplasmic N-terminus, one TM segment, and a large luminal C-terminal domain containing an amphipathic helix (AH). The cytoplasmic and TM domains were rapidly removed following signal-peptide cleavage, and the resulting mature CLN5 was tightly associated with the lumen of the membrane through the AH. CLN5 pathological mutants deprived of AH lose their membrane association, are retained in the endoplasmic reticulum, and are rapidly degraded by the proteasomal machinery. We experimentally define the topology of CLN5 and demonstrate the existence of an AH that anchors the protein to the membrane. Our work sheds light on the basic properties of CLN5 required to better understand its biological functions and involvement in NCL pathogenesis.
机译:神经退行性疾病神经元类固醇脂褐变病(NCL)的一种晚期婴儿变异是由CLN5基因突变引起的。 CLN5编码溶酶体糖蛋白,其结构和功能尚未明确定义。在本研究中,我们使用表位标记的CLN5来确定CLN5蛋白的拓扑和溶解度。我们的结果表明,CLN5合成为II型跨膜(TM)糖蛋白,具有一个细胞质N端,一个TM片段和一个包含两亲性螺旋(AH)的大腔C末端结构域。信号肽切割后,细胞质和TM结构域被快速去除,并且所得的成熟CLN5通过AH与膜腔紧密结合。被剥夺AH的CLN5病理突变体失去其膜缔合,保留在内质网中,并被蛋白酶体机制迅速降解。我们通过实验定义了CLN5的拓扑结构,并证明了将蛋白锚定在膜上的AH的存在。我们的工作阐明了CLN5的基本特性,以更好地了解其生物学功能和参与NCL发病机理。

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