Cologne Center for Genomics (CCG), Faculty of Medicine, University Hospital Cologne, University of Cologne, 50931 Cologne, Germany.
Center for Biochemistry, Medical Faculty, University of Cologne, 50931 Cologne, Germany.
Genes (Basel). 2021 Sep 24;12(10):1494. doi: 10.3390/genes12101494.
Primary microcephaly (MCPH) is a prenatal condition of small brain size with a varying degree of intellectual disability. It is a heterogeneous genetic disorder with 28 associated genes reported so far. Most of these genes encode centrosomal proteins. Recently, AKNA was recognized as a novel centrosomal protein that regulates neurogenesis via microtubule organization, making a likely candidate gene for MCPH. Using linkage analysis and whole-exome sequencing, we found a frameshift variant in exon 12 of (NM_030767.4: c.2737delG) that cosegregates with microcephaly, mild intellectual disability and speech impairment in a consanguineous family from Pakistan. This variant is predicted to result in a protein with a truncated C-terminus (p.(Glu913Argfs*42)), which has been shown to be indispensable to AKNA's localization to the centrosome and a normal brain development. Moreover, the amino acid sequence is altered from the beginning of the second of the two PEST domains, which are rich in proline (P), glutamic acid (E), serine (S), and threonine (T) and common to rapidly degraded proteins. An impaired function of the PEST domains may affect the intracellular half-life of the protein. Our genetic findings compellingly substantiate the predicted candidacy, based on its newly ascribed functional features, of the multifaceted protein AKNA for association with MCPH.
原发性小头畸形(MCPH)是一种产前脑小畸形,伴有不同程度的智力障碍。它是一种具有 28 个相关基因的异质性遗传疾病。这些基因大多编码中心体蛋白。最近,AKNA 被认为是一种新的中心体蛋白,通过微管组织调节神经发生,成为 MCPH 的候选基因。使用连锁分析和全外显子组测序,我们在一个来自巴基斯坦的近亲家庭中发现了一个外显子 12 中的移码变异(NM_030767.4: c.2737delG),该变异与小头畸形、轻度智力障碍和言语障碍共分离。该变异预计会导致蛋白的 C 末端截断(p.(Glu913Argfs*42)),这对于 AKNA 定位到中心体和正常大脑发育是必不可少的。此外,该氨基酸序列从两个 PEST 结构域中的第二个开始改变,PEST 结构域富含脯氨酸(P)、谷氨酸(E)、丝氨酸(S)和苏氨酸(T),是常见的快速降解蛋白。PEST 结构域的功能受损可能会影响蛋白的细胞内半衰期。我们的遗传发现有力地证实了 AKNA 作为与 MCPH 相关的多方面蛋白的候选性,这是基于其新赋予的功能特征。