Department of Developmental Neurobiology, New York State Institute for Basic Research in Developmental Disabilities, Staten Island, New York, USA.
Hum Mutat. 2010 Jun;31(6):710-21. doi: 10.1002/humu.21251.
There are 35 missense mutations among 68 different mutations in the TPP1 gene, which encodes tripeptidyl peptidase I (TPPI), a lysosomal aminopeptidase associated with classic late-infantile neuronal ceroid lipofuscinosis (CLN2 disease). To elucidate the molecular mechanisms underlying TPPI deficiency in patients carrying missense mutations and to test the amenability of mutant proteins to chemical chaperones and permissive temperature treatment, we introduced individually 14 disease-associated missense mutations into human TPP1 cDNA and analyzed the cell biology of these TPPI variants expressed in Chinese hamster ovary cells. Most TPPI variants displayed obstructed transport to the lysosomes, prolonged half-life of the proenzyme, and residual or no enzymatic activity, indicating folding abnormalities. Protein misfolding was produced by mutations located in both the prosegment (p.Gly77Arg) and throughout the length of the mature enzyme. However, the routes of removal of misfolded proteins by the cells varied, ranging from their efficient degradation by the ubiquitin/proteasome system to abundant secretion. Two TPPI variants demonstrated enhanced processing in response to folding improvement treatment, and the activity of one of them, p.Arg447His, showed a fivefold increase under permissive temperature conditions, which suggests that folding improvement strategies may ameliorate the function of some misfolding TPPI mutant proteins.
在编码三肽肽酶 I(TPPI)的 TPP1 基因中,有 68 种不同突变中有 35 种错义突变,TPPI 是一种溶酶体氨肽酶,与经典的晚发性婴儿神经元蜡样脂褐质沉积症(CLN2 病)有关。为了阐明携带错义突变的患者中 TPPI 缺乏的分子机制,并测试突变蛋白对化学伴侣和许可温度处理的适应性,我们将 14 种与疾病相关的错义突变分别引入人 TPP1 cDNA,并分析这些在中华仓鼠卵巢细胞中表达的 TPPI 变体的细胞生物学特性。大多数 TPPI 变体显示出向溶酶体的运输受阻、前酶半衰期延长和残留或无酶活性,表明折叠异常。突变位于前肽段(p.Gly77Arg)和整个成熟酶的长度上,都会导致蛋白质错误折叠。然而,细胞清除错误折叠蛋白的途径不同,从通过泛素/蛋白酶体系统的有效降解到大量分泌。两种 TPPI 变体对折叠改善处理表现出增强的加工,其中一种变体 p.Arg447His 在许可温度条件下活性增加了五倍,这表明折叠改善策略可能改善一些错误折叠的 TPPI 突变蛋白的功能。
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