Zheng Xiao-ye, Yang Mei, Tan Jie-qiong, Pan Qian, Long Zhi-gao, Dai He-ping, Xia Kun, Xia Jia-hui, Zhang Zhuo-hua
National Laboratory of Medical Genetics, Central South University, Changsha 410078, China.
Zhong Nan Da Xue Xue Bao Yi Xue Ban. 2008 Oct;33(10):883-91.
To isolate and identify the potential binding partners of LRRK2, a gene linked to both dominant familial form and sporadic form of Parkinson's disease, thus to further our knowledge of its function.
We used a sequence containing full-length of COR domain and part of ROC and MAPKKK domain as bait. The bait amplified by polymerase chain reaction (PCR) was then cloned into a yeast expression plasmid pGBKT7. After being sequenced and analyzed, pGBKT7-bait was transformed into the yeast strain AH109. Western blot was performed to confirm the expression of pGBKT7-bait in AH109 yeast strain. Then human fetal brain cDNA library was transformed into that yeast strain, which could express pGBKT7-bait fusion protein. The yeast strain which contained pGBKT7-bait and human fetal brain cDNA library was plated on quadruple dropout medium (SD/-Trp/-Leu/-His/-Ade) containing X-alpha-gal. We retested these positive colonies using 2 independent yeast strains AH109 contained pGBKT7-bait or pGBKT7, respectively. At last, these plasmids isolated from these true positive colonies were analyzed by bioinformatics.
We obtained 9 true positive colonies, these colonies were sequenced, and we performed sequence Blast in GenBank. Three colonies of the 9 positive colonies were not in open reading-frames. Among other 6 colonies, there were known proteins including spermatid perinuclear RNA-binding protein (STRBP) and BCL2-associated athanogene 5 isoform b (BAG5), as well as unknown proteins including tyrosine phosphatase non-receptor type (PTPN23), l(3)mbt-like 3 isoform b (L3MBTL3), RALY RNA binding protein-like isoform 1 (RALYL), and Homo sapiens mRNA for KIAA1783 protein, partial cds (KIAA1783).
True positive colonies of LRRK2 are successfully obtained by the yeast 2-hybrid. Our screened proteins may provide a new research clue for revealing biological functions of LRRK2, pathogenesis of Parkinson's disease, and other neurodegerations.
分离并鉴定与帕金森病的显性家族型和散发型均相关的基因LRRK2的潜在结合伙伴,从而增进我们对其功能的了解。
我们使用包含COR结构域全长以及部分ROC和MAPKKK结构域的序列作为诱饵。通过聚合酶链反应(PCR)扩增的诱饵随后被克隆到酵母表达质粒pGBKT7中。在进行测序和分析后,将pGBKT7-诱饵转化到酵母菌株AH109中。进行蛋白质免疫印迹法以确认pGBKT7-诱饵在AH109酵母菌株中的表达。然后将人胎脑cDNA文库转化到该能够表达pGBKT7-诱饵融合蛋白的酵母菌株中。将含有pGBKT7-诱饵和人胎脑cDNA文库的酵母菌株接种在含有X-α-半乳糖的四缺培养基(SD/-Trp/-Leu/-His/-Ade)上。我们分别使用2个独立的含有pGBKT7-诱饵或pGBKT7的酵母菌株AH109对这些阳性菌落进行重新检测。最后,通过生物信息学分析从这些真正的阳性菌落中分离出的质粒。
我们获得了9个真正的阳性菌落,对这些菌落进行了测序,并在GenBank中进行了序列比对。9个阳性菌落中有3个菌落不在开放阅读框中。在其他6个菌落中,有已知蛋白质,包括精子细胞核周RNA结合蛋白(STRBP)和BCL2相关抗凋亡蛋白5亚型b(BAG5),以及未知蛋白质,包括非受体型酪氨酸磷酸酶(PTPN23)、l(3)mbt样3亚型b(L3MBTL3)、RALY RNA结合蛋白样亚型1(RALYL)和人KIAA1783蛋白的mRNA,部分编码区(KIAA1783)。
通过酵母双杂交成功获得了LRRK2的真正阳性菌落。我们筛选出的蛋白质可能为揭示LRRK2的生物学功能、帕金森病的发病机制以及其他神经退行性疾病提供新的研究线索。