McHugh Brian, Krause Sue A, Yu Bin, Deans Anne-Marie, Heasman Sarah, McLaughlin Paul, Heck Margarete M S
Wellcome Trust Centre for Cell Biology, University of Edinburgh, Edinburgh EH9 3JR, Scotland, UK.
J Cell Biol. 2004 Nov 22;167(4):673-86. doi: 10.1083/jcb.200405155.
The cell cycle is widely known to be regulated by networks of phosphorylation and ubiquitin-directed proteolysis. Here, we describe IX-14/invadolysin, a novel metalloprotease present only in metazoa, whose activity appears to be essential for mitotic progression. Mitotic neuroblasts of Drosophila melanogaster IX-14 mutant larvae exhibit increased levels of nuclear envelope proteins, monopolar and asymmetric spindles, and chromosomes that appear hypercondensed in length with a surrounding halo of loosely condensed chromatin. Zymography reveals that a protease activity, present in wild-type larval brains, is missing from homozygous tissue, and we show that IX-14/invadolysin cleaves lamin in vitro. The IX-14/invadolysin protein is predominantly found in cytoplasmic structures resembling invadopodia in fly and human cells, but is dramatically relocalized to the leading edge of migrating cells. Strikingly, we find that the directed migration of germ cells is affected in Drosophila IX-14 mutant embryos. Thus, invadolysin identifies a new family of conserved metalloproteases whose activity appears to be essential for the coordination of mitotic progression, but which also plays an unexpected role in cell migration.
众所周知,细胞周期受磷酸化和泛素导向的蛋白水解网络调控。在此,我们描述了IX-14/侵袭溶素,一种仅存在于后生动物中的新型金属蛋白酶,其活性似乎对有丝分裂进程至关重要。果蝇IX-14突变幼虫的有丝分裂神经母细胞显示核膜蛋白水平升高、单极和不对称纺锤体以及长度上高度浓缩且周围有松散浓缩染色质晕圈的染色体。酶谱分析显示,野生型幼虫大脑中存在的一种蛋白酶活性在纯合组织中缺失,并且我们证明IX-14/侵袭溶素在体外可切割核纤层蛋白。IX-14/侵袭溶素蛋白主要存在于果蝇和人类细胞中类似于侵袭性伪足的细胞质结构中,但会显著重新定位到迁移细胞的前沿。令人惊讶的是,我们发现在果蝇IX-14突变胚胎中生殖细胞的定向迁移受到影响。因此,侵袭溶素确定了一个新的保守金属蛋白酶家族,其活性似乎对有丝分裂进程的协调至关重要,但在细胞迁移中也发挥着意想不到的作用。