Department of Genetics, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Genetics. 2010 Jan;184(1):79-90. doi: 10.1534/genetics.109.110189. Epub 2009 Nov 9.
Mutations in the unc-82 locus of Caenorhabditis elegans were previously identified by screening for disrupted muscle cytoskeleton in otherwise apparently normal mutagenized animals. Here we demonstrate that the locus encodes a serine/threonine kinase orthologous to human ARK5/SNARK (NUAK1/NUAK2) and related to the PAR-1 and SNF1/AMP-Activated kinase (AMPK) families. The predicted 1600-amino-acid polypeptide contains an N-terminal catalytic domain and noncomplex repetitive sequence in the remainder of the molecule. Phenotypic analyses indicate that unc-82 is required for maintaining the organization of myosin filaments and internal components of the M-line during cell-shape changes. Mutants exhibit normal patterning of cytoskeletal elements during early embryogenesis. Defects in localization of thick filament and M-line components arise during embryonic elongation and become progressively more severe as development proceeds. The phenotype is independent of contractile activity, consistent with unc-82 mutations preventing proper cytoskeletal reorganization during growth, rather than undermining structural integrity of the M-line. This is the first report establishing a role for the UNC-82/ARK5/SNARK kinases in normal development. We propose that activation of UNC-82 kinase during cell elongation regulates thick filament attachment or growth, perhaps through phosphorylation of myosin and paramyosin. We speculate that regulation of myosin is an ancestral characteristic of kinases in this region of the kinome.
先前通过筛选肌肉细胞骨架在其他方面明显正常的诱变动物中的突变体,鉴定了秀丽隐杆线虫 unc-82 基因座的突变。在这里,我们证明该基因座编码丝氨酸/苏氨酸激酶,与人 ARK5/SNARK(NUAK1/NUAK2)同源,并与 PAR-1 和 SNF1/AMP 激活激酶(AMPK)家族相关。预测的 1600 个氨基酸多肽包含一个 N 端催化结构域和分子其余部分的非复杂重复序列。表型分析表明,unc-82 在细胞形状变化过程中维持肌球蛋白丝和 M 线内部成分的组织。突变体在早期胚胎发生期间表现出细胞骨架元件的正常模式。在胚胎伸长过程中,厚丝和 M 线成分的定位缺陷出现,并随着发育的进行而变得越来越严重。该表型与收缩活性无关,与 unc-82 突变阻止生长过程中适当的细胞骨架重排一致,而不是破坏 M 线的结构完整性。这是首次报道 UNC-82/ARK5/SNARK 激酶在正常发育中的作用。我们提出,在细胞伸长过程中 UNC-82 激酶的激活调节厚丝的附着或生长,可能通过肌球蛋白和副肌球蛋白的磷酸化。我们推测肌球蛋白的调节是激酶组中该区域激酶的一个古老特征。