Neuroscience Biology, Bristol-Myers Squibb Research and Development, 5 Research Parkway, Wallingford, CT 06437, USA.
Discovery Analytical Sciences, Bristol-Myers Squibb Research and Development, 5 Research Parkway, Wallingford, CT 06437, USA.
Eur J Pharmacol. 2017 Oct 5;812:104-112. doi: 10.1016/j.ejphar.2017.07.019. Epub 2017 Jul 8.
Alzheimer's disease is associated with the accumulation of amyloid-β (Aβ) in the brain. In particular, the 42-amino acid form, Aβ1-42, is thought to play a key role in the disease. It is therefore of interest that diverse compounds, known as γ-secretase modulators (GSM), can selectively decrease Aβ1-42 production without inhibiting the production of other forms of Aβ. Here we describe the novel discovery of synergistic inhibition of Aβ by certain combinations of GSMs. Cell cultures were treated with pairwise combinations of GSMs to determine how Aβ peptide production was affected. Analysis of isobolograms and calculation of the combination index showed that BMS-869780 and GSM-2 were highly synergistic. Additional combinations of GSMs revealed that inhibition of Aβ occurred only when one GSM was of the "acid GSM" structural class and the other was of the "non-acid GSM" class. A total of 15 representative acid/non-acid GSM combinations were shown to inhibit Aβ production, whereas 10 pairwise combinations containing two acid GSMs or containing two non-acid GSMs did not inhibit Aβ. We also discovered that lasalocid, a natural product, is a potent GSM. Lasalocid is unique in that it did not synergize with other GSMs. Synergism did not translate in vivo perhaps because of biochemical differences between the cell culture model and brain. These findings reinforce the pharmacological differences between different structural classes of GSMs, and may help to exploit the potential of γ-secretase as a drug target.
阿尔茨海默病与大脑中淀粉样β(Aβ)的积累有关。特别是,42 个氨基酸形式的 Aβ1-42 被认为在疾病中起关键作用。因此,有趣的是,多种被称为γ-分泌酶调节剂(GSM)的化合物可以选择性地降低 Aβ1-42 的产生,而不抑制其他形式的 Aβ的产生。在这里,我们描述了某些 GSM 组合对 Aβ 的协同抑制的新发现。用 GSM 的成对组合处理细胞培养物,以确定 Aβ 肽的产生如何受到影响。等辐射图的分析和组合指数的计算表明,BMS-869780 和 GSM-2 具有高度协同作用。对其他 GSM 组合的分析表明,只有当一种 GSM 属于“酸性 GSM”结构类别,而另一种属于“非酸性 GSM”类别时,才会抑制 Aβ的产生。总共 15 种代表性的酸/非酸 GSM 组合被证明可以抑制 Aβ的产生,而包含两个酸 GSM 或包含两个非酸 GSM 的 10 个成对组合则不会抑制 Aβ。我们还发现,天然产物 lasalocid 是一种有效的 GSM。Lasalocid 是独特的,因为它与其他 GSM 没有协同作用。协同作用在体内没有转化,也许是因为细胞培养模型和大脑之间的生化差异。这些发现加强了不同结构类别 GSM 之间的药理学差异,并可能有助于利用 γ-分泌酶作为药物靶点的潜力。