Howard Hughes Medical Institute, Orthopaedic Research Laboratories, Department of Orthopaedic Surgery and Genetics, Children's Hospital and Harvard Medical School, Boston, MA, USA,
J Cell Commun Signal. 2009 Jun;3(2):105-13. doi: 10.1007/s12079-009-0040-z. Epub 2009 Apr 29.
Loss-of-function mutations in the gene WISP3 cause the autosomal recessive human skeletal disease Progressive Pseudorheumatoid Dysplasia, whereas mice with knockout mutations of Wisp3 have no phenotype. The lack of a phenotype in the Wisp3 knockout mice has constrained studies of the protein's in vivo function. Over-expression experiments in zebrafish indicated that WISP3 may function as a BMP and Wnt signaling modulator. To determine whether these biologic activities are retained in mice, we created two strains of transgenic mice that over-express WISP3 in a broad array of tissues. Despite strong and persistent protein over-expression, the transgenic mice remained phenotypically indistinguishable from their non-transgenic littermates. Surprisingly, WISP3 contained in conditioned medium recovered from transgenic mouse primary kidney cell cultures was able to bind BMP and to inhibit BMP signaling in vitro. Factors that account for the difference between the in vitro and in vivo activities of WISP3 remain unknown. At present, the mouse remains a challenging model organism in which to explore the biologic function of WISP3. Summary of article. Transgenic mice that broadly over-express WISP3 were created to search for in vivo biologic activities, since mice that lack WISP3 were normal. Surprisingly, transgenic mice were also phenotypically indistinguishable from wild-type animals. The mouse is a challenging model organism in which to explore the biologic function of WISP3.
WISP3 基因的功能丧失突变导致常染色体隐性遗传性人类骨骼疾病进行性假类风湿性发育不良,而 Wisp3 基因敲除突变的小鼠则没有表型。Wisp3 基因敲除小鼠缺乏表型限制了对该蛋白体内功能的研究。斑马鱼过表达实验表明,WISP3 可能作为 BMP 和 Wnt 信号的调节剂。为了确定这些生物学活性是否在小鼠中保留,我们创建了两种在广泛组织中过表达 WISP3 的转基因小鼠品系。尽管强烈且持续的蛋白过表达,但转基因小鼠与其非转基因同窝仔鼠在表型上仍无明显差异。令人惊讶的是,从转基因小鼠原代肾细胞培养物中回收的条件培养基中所含的 WISP3 能够结合 BMP 并抑制体外 BMP 信号转导。导致 WISP3 体内和体外活性差异的因素尚不清楚。目前,小鼠仍然是一种具有挑战性的模式生物,难以探索 WISP3 的生物学功能。文章摘要。为了寻找体内生物学活性,我们创建了广泛过表达 WISP3 的转基因小鼠,因为缺乏 WISP3 的小鼠是正常的。令人惊讶的是,转基因小鼠与野生型动物在表型上也没有明显差异。小鼠是一种具有挑战性的模式生物,难以探索 WISP3 的生物学功能。