Hulleman John D, Nguyen Annie, Ramprasad V L, Murugan Sakthivel, Gupta Ravi, Mahindrakar Avinash, Angara Ravi, Sankurathri Chandrasekhar, Mootha V Vinod
Department of Ophthalmology, University of Texas Southwestern Medical Center, Dallas, TX; Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas, TX.
Department of Ophthalmology, University of Texas Southwestern Medical Center, Dallas, TX.
Mol Vis. 2016 Jan 24;22:73-81. eCollection 2016.
To identify the causative mutation in two siblings from a consanguineous family in India with retinitis pigmentosa (RP) and polydactyly without other findings of Bardet-Biedl syndrome (BBS). We also performed functional characterization of the mutant protein to explore its role in this limited form of BBS.
The siblings underwent a thorough ophthalmological examination, including retinal optical coherence tomography (OCT) imaging, and an extensive physical examination with abdominal ultrasonography to characterize the disease phenotype. Next-generation sequencing (NGS) using a panel targeting retinal degeneration genes was performed on genomic DNA samples from the siblings and parents. Upon identification of the causative mutation, functional characterization was accomplished by performing protein-protein interaction studies in human embryonic kidney (HEK-293T) and human adult retinal pigmented epithelium (ARPE-19) cells.
The two siblings showed signs of RP and polydactyly. The patients did not have truncal obesity, renal anomalies, hydrometrocolpos, congenital heart disease, or overt cognitive defects. NGS identified a homozygous c.1184A>G mutation in the MKKS/BBS6 gene in both patients resulting in a p.H395R substitution in the MKKS/BBS6 protein. This mutant protein decreased the interaction of MKKS/BBS6 with BBS12 but did so to a different extent in the HEK-293T versus ARPE-19 cells. Nonetheless, the effect of the H395R variant on disrupting interactions with BBS12 was not as profound as other reported MKKS/BBS6 mutations associated with syndromic RP.
We identified a novel H395R substitution in MKKS/BBS6 that results in a unique phenotype of only RP and polydactyly. Our observations reaffirm the notion that mutations in MKKS/BBS6 cause phenotypic heterogeneity and do not always result in classic MKKS or BBS findings.
在印度一个近亲家庭中,鉴定两名患有色素性视网膜炎(RP)和多指畸形且无巴德-比德尔综合征(BBS)其他表现的兄弟姐妹中的致病突变。我们还对突变蛋白进行了功能表征,以探讨其在这种有限形式的BBS中的作用。
对这两名兄弟姐妹进行了全面的眼科检查,包括视网膜光学相干断层扫描(OCT)成像,并进行了包括腹部超声检查在内的广泛体格检查,以表征疾病表型。使用靶向视网膜变性基因的基因 panel 对兄弟姐妹及其父母的基因组 DNA 样本进行了下一代测序(NGS)。在鉴定出致病突变后,通过在人胚肾(HEK-293T)细胞和成人视网膜色素上皮(ARPE-19)细胞中进行蛋白质-蛋白质相互作用研究来完成功能表征。
这两名兄弟姐妹表现出 RP 和多指畸形的体征。患者没有躯干肥胖、肾脏异常、阴道积水、先天性心脏病或明显的认知缺陷。NGS 在两名患者的 MKKS/BBS6 基因中均鉴定出纯合的 c.1184A>G 突变,导致 MKKS/BBS6 蛋白中的 p.H395R 替代。这种突变蛋白降低了 MKKS/BBS6 与 BBS12 的相互作用,但在 HEK-293T 细胞和 ARPE-19 细胞中的降低程度不同。尽管如此,H395R 变体对破坏与 BBS12 相互作用的影响不如其他报道的与综合征性 RP 相关的 MKKS/BBS6 突变那么显著。
我们在 MKKS/BBS6 中鉴定出一种新的 H395R 替代,其导致仅 RP 和多指畸形的独特表型。我们的观察结果再次证实了 MKKS/BBS6 突变会导致表型异质性,并且并不总是导致典型的 MKKS 或 BBS 表现这一观点。