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Identification and characterisation of carnostatine (SAN9812), a potent and selective carnosinase (CN1) inhibitor with in vivo activity

机译:肉甾醇(SAN9812),有效和选择性肉毒酶(CN1)抑制剂的鉴定和表征,体内活性

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摘要

Carnosinase 1 (CN1) has been postulated to be a susceptibility factor for developing diabetic nephropathy (DN). Although its major substrate, carnosine, is beneficial in rodent models of DN, translation of these findings to humans has been hampered by high CN1 activity in human serum resulting in rapid degradation of carnosine. To overcome this hurdle, we screened a protease-directed small-molecule library for inhibitors of human recombinant CN1. We identified SAN9812 as a potent and highly selective inhibitor of CN1 activity with a K-i of 11nM. It also inhibited CN1 activity in human serum and serum of transgenic mice-overexpressing human CN1. Subcutaneous administration of 30mg/kg SAN9812 led to a sustained reduction in circulating CN1 activity in human CN1 transgenic (TG) mice. Simultaneous administration of carnosine and SAN9812 increased carnosine levels in plasma and kidney by up to 100-fold compared to treatment-naive CN1-overexpressing mice. To our knowledge, this is the first study reporting on a potent and selective CN1 inhibitor with in vivo activity. SAN9812, also called carnostatine, may be used to increase renal carnosine concentration as a potential therapeutic modality for renal diseases linked to glycoxidative conditions.
机译:咔啉酶1(CN1)已经假定为患糖尿病肾病(DN)的易感因子。虽然它的主要基材肉桂苷,但在DN的啮齿动物模型中是有益的,但这些发现对人类的翻译被人血清中的高CN1活性受到阻碍,导致肉核苷酸的快速降解。为了克服这种障碍,我们筛选了一种用于人重组CN1的抑制剂的蛋白酶引导的小分子文库。我们将SAN9812鉴定为具有11nm的K-I的CN1活性的有效和高度选择的抑制剂。它还抑制人血清中的CN1活性和转基因小鼠过表达人CN1的血清。皮下给药30mg / kg SAN9812导致人CN1转基因(TG)小鼠中循环CN1活性的持续降低。与治疗幼稚CN1过表达小鼠相比,同时施用肉毒碱和SAN9812增加血浆和肾脏的肉毒酮水平至多100倍。据我们所知,这是第一项关于有效和选择性CN1抑制剂的研究报告,具有体内活性。 San9812也称为胞质甾醇,可用于将肾上腺素浓度增加,作为与甘醇氧化条件相关的肾疾病的潜在治疗方式。

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