Schiller NaTasha R, Duchesneau Christopher D, Lane Latrisha S, Reedy April R, Manzon Emily R, Hoppe Pamela E
Department of Biological Sciences, Western Michigan University, Kalamazoo, Michigan 49008-5410.
Department of Biological Sciences, Western Michigan University, Kalamazoo, Michigan 49008-5410
Genetics. 2017 Mar;205(3):1195-1213. doi: 10.1534/genetics.116.193029. Epub 2016 Dec 30.
We study the mechanisms that guide the formation and maintenance of the highly ordered actin-myosin cytoskeleton in striated muscle. The UNC-82 kinase of is orthologous to mammalian kinases ARK5/NUAK1 and SNARK/NUAK2. UNC-82 localizes to the M-line, and is required for proper organization of thick filaments, but its substrate and mechanism of action are unknown. Antibody staining of three mutants with missense mutations in the UNC-82 catalytic domain revealed muscle structure that is less disorganized than in the null , but contained distinctive ectopic accumulations not found in These accumulations contain paramyosin and myosin B, but lack myosin A and myosin A-associated proteins, as well as proteins of the integrin-associated complex. Fluorescently tagged missense mutant protein UNC-82 E424K localized normally in wild type; however, in , the tagged protein was found in the ectopic accumulations, which we also show to label with recently synthesized paramyosin. Recruitment of wild-type UNC-82::GFP to aggregates of differing protein composition in five muscle-affecting mutants revealed that colocalization of UNC-82 and paramyosin does not require UNC-96, UNC-98/ZnF, UNC-89/obscurin, CSN-5, myosin A, or myosin B individually. Dosage effects in paramyosin mutants suggest that UNC-82 acts as part of a complex, in which its stoichiometric relationship with paramyosin is critical. UNC-82 dosage affects muscle organization in the absence of paramyosin, perhaps through myosin B. We present evidence that the interaction of UNC-98/ZnF with myosin A is independent of UNC-82, and that UNC-82 acts upstream of UNC-98/ZnF in a pathway that organizes paramyosin during thick filament assembly.
我们研究了指导横纹肌中高度有序的肌动蛋白-肌球蛋白细胞骨架形成和维持的机制。线虫的UNC-82激酶与哺乳动物激酶ARK5/NUAK1和SNARK/NUAK2直系同源。UNC-82定位于M线,是粗肌丝正确组织所必需的,但其底物和作用机制尚不清楚。对UNC-82催化结构域中具有错义突变的三个突变体进行抗体染色,结果显示肌肉结构的紊乱程度低于缺失突变体,但含有在缺失突变体中未发现的独特异位聚集物。这些聚集物含有副肌球蛋白和肌球蛋白B,但缺乏肌球蛋白A和肌球蛋白A相关蛋白,以及整合素相关复合物的蛋白。荧光标记的错义突变蛋白UNC-82 E424K在野生型中正常定位;然而,在缺失突变体中,标记蛋白存在于异位聚集体中,我们还发现这些聚集体与新合成的副肌球蛋白共定位。在五个影响肌肉的突变体中,野生型UNC-82::GFP募集到不同蛋白质组成的聚集体中,结果显示UNC-82和副肌球蛋白的共定位不需要单独的UNC-96、UNC-98/锌指蛋白、UNC-89/ obscurin、CSN-5、肌球蛋白A或肌球蛋白B。副肌球蛋白突变体中的剂量效应表明,UNC-82作为复合物的一部分起作用,其中它与副肌球蛋白的化学计量关系至关重要。在没有副肌球蛋白的情况下,UNC-82的剂量会影响肌肉组织,可能是通过肌球蛋白B。我们提供的证据表明,UNC-98/锌指蛋白与肌球蛋白A的相互作用独立于UNC-82,并且UNC-82在粗肌丝组装过程中组织副肌球蛋白的途径中位于UNC-98/锌指蛋白的上游。