Dorresteijn Bram, Rotman Maarten, Faber Dorien, Schravesande Ruud, Suidgeest Ernst, van der Weerd Louise, van der Maarel Silvère M, Verrips Cornelis T, El Khattabi Mohamed
Biomolecular Imaging Group, Division of Cell Biology, Department of Biology, Faculty of Science, Utrecht University, The Netherlands.
Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands.
FEBS J. 2015 Sep;282(18):3618-31. doi: 10.1111/febs.13367. Epub 2015 Jul 22.
Accumulation and aggregation of the amyloid-β (Aβ) peptide is associated with Alzheimer's disease (AD). Aβ is generated from the amyloid precursor protein by the successive action of two membrane-associated processing enzymes: β-secretase or β-site of amyloid precursor protein cleaving enzyme 1 (BACE1) and γ-secretase. Inhibition of one or both of these enzymes prevents Aβ generation and the accompanying Aβ accumulation. Antigen binding fragments from camelid heavy chain only antibodies (VHHs) were found to exert excellent enzyme inhibition activity. In the present study, we generated VHHs against BACE1 by active immunization of Lama glama with the recombinant BACE1 protein. Two classes of VHHs were selected from a VHH-phage display library by competitive elution with a peptide encoding the Swedish mutation variant of the BACE1 processing site. One VHH was found to inhibit the enzyme activity of BACE1 in vitro and in cell culture, whereas two other VHHs were found to stimulate BACE1 activity under the same conditions in vitro. Furthermore, an in vivo study with a transgenic AD mouse model, using intracisternal injection of the inhibitory VHH, led to acute reduction of the Aβ load in the blood and brain. This inhibitory VHH may be considered as a candidate molecule for a therapy directed towards reduction of Aβ load and prevention of AD progression. Both the inhibitory and stimulatory VHH may be useful for improving our understanding of the structure-function relationship of BACE1, as well as its role in AD progression.
The GenBank sequence accession numbers are KR363186 for VHH B1a; KR363187 for VHH B3a; and KR363188 for VHH B5a.
淀粉样β(Aβ)肽的积累和聚集与阿尔茨海默病(AD)相关。Aβ由淀粉样前体蛋白通过两种膜相关加工酶的连续作用产生:β-分泌酶或淀粉样前体蛋白裂解酶1(BACE1)的β位点和γ-分泌酶。抑制其中一种或两种酶可防止Aβ生成及伴随的Aβ积累。发现骆驼科动物仅重链抗体(VHHs)的抗原结合片段具有出色的酶抑制活性。在本研究中,我们用重组BACE1蛋白对羊驼进行主动免疫,产生了针对BACE1的VHHs。通过用编码BACE1加工位点瑞典突变变体的肽进行竞争性洗脱,从VHH-噬菌体展示文库中筛选出两类VHHs。发现一种VHH在体外和细胞培养中抑制BACE1的酶活性,而另外两种VHHs在相同体外条件下刺激BACE1活性。此外,在转基因AD小鼠模型中进行的体内研究,通过脑池内注射抑制性VHH,导致血液和脑中Aβ负荷急性降低。这种抑制性VHH可被视为一种候选分子,用于旨在降低Aβ负荷和预防AD进展的治疗。抑制性和刺激性VHHs都可能有助于增进我们对BACE1结构-功能关系及其在AD进展中作用的理解。
VHH B1a的GenBank序列登录号为KR363186;VHH B3a的为KR363187;VHH B5a的为KR363188。