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CPAP 中与分离功能 MCPH 相关的突变会影响中心体的数量和长度。

Separation-of-function MCPH-associated mutations in CPAP affect centriole number and length.

机构信息

Department of Bioscience & Bioengineering, Indian Institute of Technology Jodhpur, NH 62, Nagaur Road, Karwar 342037, Jodhpur, Rajasthan, India.

出版信息

J Cell Sci. 2023 Nov 1;136(21). doi: 10.1242/jcs.261297. Epub 2023 Nov 6.

Abstract

Centrioles are microtubule-based cylindrical ultrastructures characterized by their definite size and robustness. The molecular capping protein, CPAP (also known as CENPJ) engages its N-terminal region with the centriole microtubules to regulate their length. Nevertheless, the conserved C-terminal glycine-rich G-box of CPAP, which interacts with the centriole inner cartwheel protein STIL, is frequently mutated in primary microcephaly (MCPH) patients. Here, we show that two different MCPH-associated variants, E1235V and D1196N in the CPAP G-box, affect distinct functions at centrioles. The E1235V mutation reduces CPAP centriole recruitment and causes overly long centrioles. The D1196N mutation increases centriole numbers without affecting centriole localization. Both mutations prevent binding to STIL, which controls centriole duplication. Our work highlights the involvement of an alternative CEP152-dependent route for CPAP centriole localization. Molecular dynamics simulations suggest that E1235V leads to an increase in G-box flexibility, which could have implications on its molecular interactions. Collectively, we demonstrate that a CPAP region outside the microtubule-interacting domains influences centriole number and length, which translates to spindle defects and reduced cell viability. Our work provides new insights into the molecular causes of primary microcephaly.

摘要

中心体是一种基于微管的圆柱状超微结构,其特征为大小和稳定性。分子盖蛋白 CPAP(也称为 CENPJ)通过其 N 端区域与中心体微管结合,从而调节微管长度。然而,CPAP 的保守 C 端富含甘氨酸的 G 盒与中心体内部轮辐蛋白 STIL 相互作用,在原发性小头畸形(MCPH)患者中经常发生突变。在这里,我们展示了 CPAP G 盒中的两种不同的 MCPH 相关变体,E1235V 和 D1196N,会影响中心体的不同功能。E1235V 突变会减少 CPAP 中心体募集,并导致中心体过长。D1196N 突变会增加中心体数量,但不影响中心体定位。这两种突变都阻止了与 STIL 的结合,而 STIL 控制着中心体的复制。我们的工作强调了一种替代的 CEP152 依赖途径在 CPAP 中心体定位中的作用。分子动力学模拟表明,E1235V 导致 G 盒的灵活性增加,这可能对其分子相互作用产生影响。总的来说,我们证明了 CPAP 微管相互作用结构域以外的区域会影响中心体的数量和长度,从而导致纺锤体缺陷和细胞活力降低。我们的工作为原发性小头畸形的分子病因提供了新的见解。

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