School of Biochemistry and Biotechnology (SBB), University of the Punjab, Lahore-54590, Pakistan.
Department of Allied Health Sciences, University of Sargodha, Sargodha, 40100, Pakistan.
J Hum Genet. 2023 Jul;68(7):469-475. doi: 10.1038/s10038-023-01132-6. Epub 2023 Mar 3.
Primary microcephaly is a rare, congenital, and genetically heterogeneous disorder in which occipitofrontal head circumference is reduced by a minimum of three standard deviations (SDs) from average because of the defect in fetal brain development.
Mapping of RBBP8 gene mutation that produce autosomal recessive primary microcephaly. Insilco RBBP8 protein models prediction and analysis.
Consanguineous Pakistani family affected with non-syndromic primary microcephaly was mapped a biallelic sequence variant (c.1807_1808delAT) in the RBBP8 gene via whole-exome sequencing. The deleted variant in the RBBP8 gene in affected siblings (V:4, V:6) of primary microcephaly was confirmed by sanger sequencing.
Identified variant c.1807_1808delAT that truncated the protein translation p. Ile603Lysfs*7 and impaired the functioning of RBBP8 protein. This sequence variant was only reported previously in Atypical Seckel syndrome and Jawad syndrome, while we mapped it in the non-syndromic primary microcephaly family. We predicted 3D protein models by using Insilco tools like I TASSER, Swiss model, and phyre2 of wild RBBP8 protein of 897 amino acids and 608 amino acids of the mutant protein. These models were validated through the online SAVES server and Ramachandran plot and refined by using the Galaxy WEB server. A predicted and refined wild protein 3D model was deposited with accession number PM0083523 in Protein Model Database. A normal mode-based geometric simulation approach was used through the NMSim program, to find out the structural diversity of wild and mutant proteins which were evaluated by RMSD and RMSF. Higher RMSD and RMSF in mutant protein reduced the stability of the protein.
The high possibility of this variant results in nonsense-mediated decay of mRNA, leading to the loss of protein functioning which causes primary microcephaly.
定位导致常染色体隐性原发性小头畸形的 RBBP8 基因突变。预测和分析 RBBP8 蛋白的结构模型。
对患有常染色体隐性原发性小头畸形的巴基斯坦近亲家系进行全外显子组测序,发现 RBBP8 基因中存在一个双等位基因序列变异(c.1807_1808delAT)。通过桑格测序对受影响的兄弟姐妹(原发性小头畸形患者 V:4 和 V:6)的 RBBP8 基因中缺失的变异进行确认。
鉴定出的变异 c.1807_1808delAT 导致蛋白翻译截断,p.Ile603Lysfs*7,并使 RBBP8 蛋白的功能受损。该序列变异此前仅在非典型 Seckel 综合征和 Jawad 综合征中报道过,而我们将其定位在非综合征性原发性小头畸形家系中。我们使用 I TASSER、Swiss model 和 phyre2 等计算工具对野生型 RBBP8 蛋白(897 个氨基酸)和突变型蛋白(608 个氨基酸)进行了 3D 蛋白结构预测。这些模型通过在线 SAVES 服务器和 Ramachandran 图进行验证,并使用 Galaxy WEB 服务器进行了优化。一个预测并优化后的野生型蛋白 3D 模型已通过 PM0083523 号 accession number 存入蛋白质模型数据库。我们还通过 NMSim 程序,对野生型和突变型蛋白进行了基于正常模式的几何模拟,以发现其结构多样性,并通过 RMSD 和 RMSF 进行评估。突变型蛋白的 RMSD 和 RMSF 值较高,导致其稳定性降低。
该变异很可能导致 mRNA 的无意义介导的衰变,从而导致蛋白功能丧失,引发原发性小头畸形。