Chiu Hsiling, Ring Brian C, Sorrentino Richard Paul, Kalamarz Marta, Garza Dan, Govind Shubha
Department of Functional Genomics, Novartis Institutes for Biomedical Research, 100 Technology Square Bldg. 601-Rm. 6404, Cambridge, MA 02139, USA.
Dev Biol. 2005 Dec 1;288(1):60-72. doi: 10.1016/j.ydbio.2005.08.008. Epub 2005 Oct 24.
Highly conserved during evolution, the enzyme Ubc9 activates the small ubiquitin-like modifier (SUMO) prior to its covalent ligation to target proteins. We have used mutations in the Drosophila Ubc9 (dUbc9) gene to understand Ubc9 functions in vivo. Loss-of-function mutations in dUbc9 cause strong mitotic defects in larval hematopoietic tissues, an increase in the number of hematopoietic precursors in the lymph gland and of mature blood cells in circulation, and an increase in the proportion of cyclin-B-positive cells. Some blood cells are polyploid and multinucleate, exhibiting signs of genomic instability. We also observe an overabundance of highly differentiated blood cells (lamellocytes), normally not found in healthy larvae. Lamellocytes in mutants are either free in circulation or recruited to form tumorous masses. Hematopoietic defects of dUbc9 mutants are strongly suppressed in the absence of the Rel/NF-kappaB-family transcription factors Dorsal and Dif or in the presence of a non-signaling allele of Cactus, the IkappaB protein in Drosophila. In the larval fat body, dUbc9 negatively regulates the expression of the antifungal peptide gene drosomycin, which is constitutively expressed in dUbc9 mutants in the absence of immune challenge. dUbc9-mediated drosomycin expression requires Dorsal and Dif. Together, our results support a role for dUbc9 in the negative regulation of the Drosophila NF-kappaB signaling pathways in larval hematopoiesis and humoral immunity.
在进化过程中高度保守的Ubc9酶,在将小泛素样修饰物(SUMO)共价连接到靶蛋白之前激活它。我们利用果蝇Ubc9(dUbc9)基因中的突变来了解Ubc9在体内的功能。dUbc9中的功能丧失突变在幼虫造血组织中导致强烈的有丝分裂缺陷,淋巴腺中造血前体细胞数量增加以及循环中成熟血细胞数量增加,并且细胞周期蛋白B阳性细胞的比例增加。一些血细胞是多倍体和多核的,表现出基因组不稳定的迹象。我们还观察到大量高度分化的血细胞(片状细胞),正常情况下在健康幼虫中不存在。突变体中的片状细胞要么在循环中游离,要么被募集形成肿瘤块。在没有Rel/NF-κB家族转录因子Dorsal和Dif的情况下,或者在果蝇中IkappaB蛋白Cactus的无信号等位基因存在的情况下,dUbc9突变体的造血缺陷被强烈抑制。在幼虫脂肪体中,dUbc9负向调节抗真菌肽基因drosomycin的表达,该基因在没有免疫挑战的情况下在dUbc9突变体中组成性表达。dUbc9介导的drosomycin表达需要Dorsal和Dif。总之,我们的结果支持dUbc9在幼虫造血和体液免疫中对果蝇NF-κB信号通路的负调节作用。