Department of Human Genetics, University of Michigan, Ann Arbor, MI 48109-5618, USA.
G3 (Bethesda). 2023 Aug 9;13(8). doi: 10.1093/g3journal/jkad007.
Loss-of-function mutations of FIG4 are responsible for neurological disorders in human and mouse that result from reduced abundance of the signaling lipid PI(3,5)P2. In contrast, loss-of-function mutations of the phosphoinositide kinase PIP4K2C result in elevated abundance of PI(3,5)P2. These opposing effects on PI(3,5)P2 suggested that we might be able to compensate for deficiency of FIG4 by reducing expression of PIP4K2C. To test this hypothesis in a whole animal model, we generated triallelic mice with genotype Fig 4-/-, Pip4k2c+/-; these mice are null for Fig 4 and haploinsufficient for Pip4k2c. The neonatal lethality of Fig 4 null mice in the C57BL/6J strain background was rescued by reduced expression of Pip4k2c. The lysosome enlargement characteristic of Fig 4 null cells was also reduced by heterozygous loss of Pip4k2c. The data demonstrate interaction between these two genes, and suggest that inhibition of the kinase PIPK4C2 could be a target for treatment of FIG4 deficiency disorders such as Charcot-Marie-Tooth Type 4J and Yunis-Varón Syndrome.
FIG4 的功能丧失突变是导致人和小鼠神经紊乱的原因,其结果是信号脂质 PI(3,5)P2 的丰度降低。相比之下,磷酸肌醇激酶 PIP4K2C 的功能丧失突变会导致 PI(3,5)P2 的丰度升高。PI(3,5)P2 的这种相反作用表明,我们或许可以通过降低 PIP4K2C 的表达来弥补 FIG4 的缺乏。为了在全动物模型中验证这一假设,我们生成了基因型为 Fig 4-/-、Pip4k2c+/-的三等位基因小鼠;这些小鼠对 Fig 4 缺失且对 Pip4k2c 杂合不足。在 C57BL/6J 品系背景下,Fig 4 缺失型小鼠的新生期致死率通过降低 Pip4k2c 的表达得到挽救。Fig 4 缺失型细胞的溶酶体增大特征也因 Pip4k2c 的杂合缺失而减少。这些数据表明这两个基因之间存在相互作用,并表明抑制激酶 PIPK4C2 可能是治疗 FIG4 缺乏症(如 Charcot-Marie-Tooth 型 4J 和 Yunis-Varón 综合征)的一种靶点。