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对人N-乙酰半乳糖胺-6-硫酸酯酶具有耐受性的MPS IVA小鼠(Galnstm(hC79S.mC76S)slu)的发育

Development of MPS IVA mouse (Galnstm(hC79S.mC76S)slu) tolerant to human N-acetylgalactosamine-6-sulfate sulfatase.

作者信息

Tomatsu Shunji, Gutierrez Monica, Nishioka Tatsuo, Yamada Masamichi, Yamada Mana, Tosaka Yasuhiro, Grubb Jeffrey H, Montaño Adriana M, Vieira Matheus B, Trandafirescu Georgeta G, Peña Olga M, Yamaguchi Seiji, Orii Koji O, Orii Tadao, Noguchi Akihiko, Laybauer Leticia

机构信息

Department of Pediatrics, Pediatric Research Institute, Saint Louis University, MO 63110, USA.

出版信息

Hum Mol Genet. 2005 Nov 15;14(22):3321-35. doi: 10.1093/hmg/ddi364. Epub 2005 Oct 11.

Abstract

Mucopolysaccharidosis IVA (MPS IVA) is an autosomal recessive disease caused by N-acetylgalactosamine-6-sulfate sulfatase (GALNS) deficiency. In recent studies of enzyme replacement therapy for animal models with lysosomal storage diseases, cellular and humoral immune responses to the injected enzymes have been recognized as major impediments to effective treatment. To study the long-term effectiveness and side effects of therapies in the absence of immune responses, we have developed an MPS IVA mouse model, which has many similarities to human MPS IVA and is tolerant to human GALNS protein. We used a construct containing both a transgene (cDNA) expressing inactive human GALNS in intron 1 and an active site mutation (C76S) in adjacent exon 2 and thereby introduced both the inactive cDNA and the C76S mutation into the murine Galns by targeted mutagenesis. Affected homozygous mice have no detectable GALNS enzyme activity and accumulate glycosaminoglycans in multiple tissues including visceral organs, brain, cornea, bone, ligament and bone marrow. At 3 months, lysosomal storage is marked within hepatocytes, reticuloendothelial Kupffer cells, and cells of the sinusoidal lining of the spleen, neurons and meningeal cells. The bone storage is also obvious, with lysosomal distention in osteoblasts and osteocytes lining the cortical bone, in chondrocytes and in the sinus lining cells in bone marrow. Ubiquitous expression of the inactive human GALNS was also confirmed by western blot using the anti-GALNS monoclonal antibodies newly produced, which resulted in tolerance to immune challenge with human enzyme. The newly generated MPS IVA mouse model should provide a good model to evaluate long-term administration of enzyme replacement.

摘要

黏多糖贮积症IVA型(MPS IVA)是一种常染色体隐性疾病,由N-乙酰半乳糖胺-6-硫酸酯硫酸酯酶(GALNS)缺乏引起。在最近针对溶酶体贮积病动物模型的酶替代疗法研究中,对注射酶的细胞免疫和体液免疫反应已被认为是有效治疗的主要障碍。为了研究在无免疫反应情况下疗法的长期有效性和副作用,我们构建了一种MPS IVA小鼠模型,该模型与人类MPS IVA有许多相似之处,并且对人类GALNS蛋白具有耐受性。我们使用了一种构建体,其在第1内含子中包含一个表达无活性人类GALNS的转基因(cDNA)以及相邻外显子2中的一个活性位点突变(C76S),从而通过靶向诱变将无活性cDNA和C76S突变引入小鼠Galns基因中。受影响的纯合小鼠没有可检测到的GALNS酶活性,并且在包括内脏器官、大脑、角膜、骨骼、韧带和骨髓在内的多个组织中积累糖胺聚糖。在3个月大时,溶酶体贮积在肝细胞、网状内皮库普弗细胞、脾脏窦状内衬细胞、神经元和脑膜细胞中明显可见。骨骼中的贮积也很明显,在皮质骨内衬的成骨细胞和骨细胞、软骨细胞以及骨髓窦内衬细胞中存在溶酶体扩张。使用新产生的抗GALNS单克隆抗体进行蛋白质印迹分析也证实了无活性人类GALNS的普遍表达,这使得小鼠对人类酶的免疫攻击具有耐受性。新构建的MPS IVA小鼠模型应该为评估酶替代疗法的长期给药提供一个良好的模型。

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