Faculty of Biological and Environmental Sciences, University of Helsinki, 00100 Helsinki, Finland.
School of Molecular and Cellular Biology, University of Leeds, Leeds LS2 9JT, UK.
Int J Mol Sci. 2023 Jan 31;24(3):2682. doi: 10.3390/ijms24032682.
Deleterious mutations in the X-linked Patched domain-containing 1 (PTCHD1) gene may account for up to 1% of autism cases. Despite this, the PTCHD1 protein remains poorly understood. Structural similarities to Patched family proteins point to a role in sterol transport, but this hypothesis has not been verified experimentally. Additionally, PTCHD1 has been suggested to be involved in Hedgehog signalling, but thus far, the experimental results have been conflicting. To enable a variety of biochemical and structural experiments, we developed a method for expressing PTCHD1 in cells, solubilising it in glycol-diosgenin, and purifying it to homogeneity. In vitro and in silico experiments show that PTCHD1 function is not interchangeable with Patched 1 (PTCH1) in canonical Hedgehog signalling, since it does not repress Smoothened in mouse embryonic fibroblasts and does not bind Sonic Hedgehog. However, we found that PTCHD1 binds cholesterol similarly to PTCH1. Furthermore, we identified 13 PTCHD1-specific protein interactors through co-immunoprecipitation and demonstrated a link to cell stress responses and RNA stress granule formation. Thus, our results support the notion that despite structural similarities to other Patched family proteins, PTCHD1 may have a distinct cellular function.
X 连锁跨膜蛋白 Patched 域包含 1 号基因(PTCHD1)中的有害突变可能占自闭症病例的 1%。尽管如此,PTCHD1 蛋白仍然知之甚少。与 Patched 家族蛋白的结构相似性表明其在固醇转运中具有作用,但这一假设尚未得到实验验证。此外,PTCHD1 被认为参与 Hedgehog 信号通路,但到目前为止,实验结果相互矛盾。为了能够进行各种生化和结构实验,我们开发了一种在 细胞中表达 PTCHD1 的方法,用糖酵二烯醇将其溶解,并将其纯化至均相。体外和计算机模拟实验表明,PTCHD1 的功能不能与经典 Hedgehog 信号通路中的 Patched 1(PTCH1)互换,因为它不能抑制 小鼠胚胎成纤维细胞中的 Smoothened,也不能与 Sonic Hedgehog 结合。然而,我们发现 PTCHD1 与 PTCH1 相似地结合胆固醇。此外,我们通过共免疫沉淀鉴定了 13 个 PTCHD1 特异性蛋白相互作用物,并证明其与细胞应激反应和 RNA 应激颗粒形成有关。因此,我们的结果支持这样一种观点,即尽管与其他 Patched 家族蛋白具有结构相似性,但 PTCHD1 可能具有独特的细胞功能。