Microtubules are cytoskeletal polymers of âº/β-tubulin heterodimers essential for a wide range of cellular processes. Pathogenic variations in microtubule-encoding genes (e.g., TUBB4B, which encodes the β-4B tubulin isotype) are responsible for a wide spectrum of cerebral malformations, collectively referred to as "tubulinopathies." The phenotypic manifestation of TUBB4B-associated tubulinopathy is Leber congenital amaurosis with early-onset deafness (LCAEOD), an autosomal dominant syndrome characterized by photoreceptor and cochlear cell loss; all known patients have pathogenic variations in amino acid R391. We present the clinical and molecular genetics findings of a 16-year-old female with a de novo missense variant in exon 1 of TUBB4B, c.32 A > G (p.Gln11Arg; Q11R). In addition to hearing loss and hyperopia without retinal abnormalities, our proband presented with two phenotypes of unknown genetic etiology, i.e., renal tubular Fanconi Syndrome (FS) and hypophosphatemic rickets (HR). The Q11R variant expands the genetic basis of early sensory hearing loss; its consequences with respect to microtubule structure are described. A mechanistic explanation for the FS and rickets, involving microtubule-mediated translocation of transporter proteins to and from the apical membrane of renal proximal tubular cells, is proposed.
Clinical, genetic, and structural characterization of a novel TUBB4B tubulinopathy.
对一种新型 TUBB4B 微管蛋白病进行临床、遗传和结构表征
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作者:McFadden Jason R, Tolete Christina Deanne P, Huang Yan, Macnamara Ellen, Sept David, Nesterova Galina, Gahl William A, Sackett Dan L, Malicdan May Christine V
| 期刊: | Molecular Genetics and Metabolism Reports | 影响因子: | 1.900 |
| 时间: | 2023 | 起止号: | 2023 Jul 1; 36:100990 |
| doi: | 10.1016/j.ymgmr.2023.100990 | 研究方向: | 免疫/内分泌 |
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