Department of Biology, Truman State University, Kirksville, Missouri, USA.
Department of Chemistry, Truman State University, Kirksville, Missouri, USA.
Dev Dyn. 2022 Oct;251(10):1741-1753. doi: 10.1002/dvdy.497. Epub 2022 May 25.
Microtubule-associated proteins regulate the dynamics, organization, and function of microtubules, impacting a number of vital cellular processes. CRMPs have been shown to control microtubule assembly and axon outgrowth during neuronal differentiation. While many microtubule-associated proteins have been linked to roles in cell division and neuronal development, it is still unclear the complement that control the formation of parallel microtubule arrays in epithelial cells.
Here we show through time-lapse DIC microscopy that Caenorhabditis elegans embryos homozygous for the weak loss-of-function allele unc-33(e204) progress more slowly through epidermal morphogenesis, while animals homozygous for strong loss-of-function alleles exhibit more embryonic lethality. Identification of two novel missense mutations in unc-33(e572), Val476Gly, and Ser731Thr, lead to computational approaches to determine the potential effects of these changes on UNC-33/CRMP structure. Molecular dynamics simulations show that for Asp389Asn and Arg502His, two other known missense mutations, local changes in protein-protein hydrogen bonding affect the stability of the protein. However, the Val476Gly/Ser731Thr combination does not alter the structure or energetics of UNC-33 drastically when compared to the wild-type protein.
These results support a novel role for UNC-33/CRMP in C. elegans epidermal development and shed light on how individual amino acid changes cause a loss-of-function in UNC-33.
微管相关蛋白调节微管的动态、组织和功能,影响许多重要的细胞过程。CRMPs 已被证明在神经元分化过程中控制微管组装和轴突生长。虽然许多微管相关蛋白与细胞分裂和神经元发育有关,但控制上皮细胞中平行微管阵列形成的补充物仍不清楚。
通过延时 DIC 显微镜,我们显示 C. elegans 胚胎在表皮形态发生过程中,UNC-33(e204) 弱功能丧失等位基因纯合子的进展速度较慢,而强功能丧失等位基因纯合子的动物表现出更多的胚胎致死性。在 unc-33(e572)中鉴定出两个新的错义突变 Val476Gly 和 Ser731Thr,导致了计算方法来确定这些变化对 UNC-33/CRMP 结构的潜在影响。分子动力学模拟表明,对于另外两个已知的错义突变 Asp389Asn 和 Arg502His,局部蛋白质-蛋白质氢键变化会影响蛋白质的稳定性。然而,与野生型蛋白相比,Val476Gly/Ser731Thr 组合并没有改变 UNC-33 的结构或能量学。
这些结果支持 UNC-33/CRMP 在 C. elegans 表皮发育中的新作用,并阐明了单个氨基酸变化如何导致 UNC-33 功能丧失。