Dvash Efrat, Kra-Oz Galia, Ziv Carmit, Carmeli Shmuel, Yarden Oded
Department of Plant Pathology and Microbiology, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, Israel.
Eukaryot Cell. 2010 Apr;9(4):502-13. doi: 10.1128/EC.00230-09. Epub 2009 Dec 4.
Neurospora crassa dbf-2 encodes an NDR (nuclear Dbf2-related) protein kinase, homologous to LATS1, a core component of the Hippo pathway. This pathway plays important roles in restraining cell proliferation and promoting apoptosis in differentiating cells. Here, we demonstrate that DBF-2 is involved in three fundamental processes in a filamentous fungus: cell cycle regulation, glycogen biosynthesis, and conidiation. DBF-2 is predominantly localized to the nucleus, and most (approximately 60%) dbf-2 null mutant nuclei are delayed in mitosis, indicating that DBF-2 activity is required for properly completing the cell cycle. The dbf-2 mutant exhibits reduced basal hyphal extension rates accompanied by a carbon/nitrogen ratio-dependent bursting of hyphal tips, vast glycogen leakage, defects in aerial hypha formation, and impairment of all three asexual conidiation pathways in N. crassa. Our findings also indicate that DBF-2 is essential for sexual reproduction in a filamentous fungus. Defects in other Hippo and glycogen metabolism pathway components (mob-1, ccr-4, mst-1, and gsk-3) share similar phenotypes such as mitotic delay and decreased CDC-2 (cell division cycle 2) protein levels, massive hyphal swellings, hyphal tip bursting, glycogen leakage, and impaired conidiation. We propose that DBF-2 functions as a link between Hippo and glycogen metabolism pathways.
粗糙脉孢菌的dbf-2编码一种NDR(核Dbf2相关)蛋白激酶,与Hippo信号通路的核心成分LATS1同源。该信号通路在抑制细胞增殖和促进分化细胞凋亡中发挥重要作用。在此,我们证明DBF-2参与丝状真菌的三个基本过程:细胞周期调控、糖原生物合成和分生孢子形成。DBF-2主要定位于细胞核,并且大多数(约60%)dbf-2缺失突变体的细胞核在有丝分裂中延迟,这表明DBF-2活性是正常完成细胞周期所必需的。dbf-2突变体表现出基础菌丝延伸速率降低,伴有菌丝顶端碳/氮比依赖性的破裂、大量糖原泄漏、气生菌丝形成缺陷以及粗糙脉孢菌所有三种无性分生孢子形成途径的受损。我们的研究结果还表明DBF-2对丝状真菌的有性生殖至关重要。其他Hippo和糖原代谢途径成分(mob-1、ccr-4、mst-1和gsk-3)的缺陷具有相似的表型,如 mitotic 延迟和CDC-2(细胞分裂周期2)蛋白水平降低、大量菌丝肿胀、菌丝顶端破裂、糖原泄漏和分生孢子形成受损。我们提出DBF-2作为Hippo和糖原代谢途径之间的联系发挥作用。