Gorman Maureen J, An Chunju, Kanost Michael R
Department of Biochemistry, Kansas State University, Manhattan, KS 66506, USA.
Insect Biochem Mol Biol. 2007 Dec;37(12):1327-37. doi: 10.1016/j.ibmb.2007.08.006. Epub 2007 Sep 4.
In insects, 3,4-dihydroxyphenylalanine (DOPA) is required for tanning of newly formed cuticle and the production of melanin during some types of immune responses. DOPA is produced by the hydroxylation of tyrosine, and this reaction can be catalyzed by two types of enzymes: tyrosine hydroxylase (TH) and phenoloxidase (PO). TH is required for cuticle tanning in Drosophila melanogaster and for cuticle pigmentation in other insect species, but additional functions of TH have been uncertain. In contrast, an immune function for PO has been well documented. The goal of this study was to characterize TH from Manduca sexta with a focus on its possible contribution to cuticle tanning and immune-associated melanization. We cloned a full-length TH cDNA, purified recombinant TH, and confirmed that MsTH and MsPO have tyrosine hydroxylating activity. To determine possible functions, we analyzed TH expression profiles. TH mRNA and protein were present in eggs at the stage when the pharate larval cuticle begins to tan and also in the integument of molting larvae. The amount of TH in the integument was correlated with the degree of cuticle tanning. Unlike PO, which was found to be constitutively expressed by hemocytes and was present in plasma, TH was upregulated in hemocytes and the fat body in response to an immune challenge and remained intracellular. These data suggest that TH is required for cuticle tanning and immunity in M. sexta. Based on the collective information from many studies, we propose a model in which TH is a major producer of the DOPA required for both cuticle tanning and immune-associated melanization.
在昆虫中,新形成的表皮鞣化以及某些免疫反应过程中黑色素的产生都需要3,4-二羟基苯丙氨酸(DOPA)。DOPA由酪氨酸羟基化产生,该反应可由两种酶催化:酪氨酸羟化酶(TH)和酚氧化酶(PO)。在黑腹果蝇中,TH是表皮鞣化所必需的,在其他昆虫物种中是表皮色素沉着所必需的,但TH的其他功能尚不确定。相比之下,PO的免疫功能已有充分记录。本研究的目的是对烟草天蛾的TH进行表征,重点关注其对表皮鞣化和免疫相关黑色素生成的可能贡献。我们克隆了全长TH cDNA,纯化了重组TH,并证实MsTH和MsPO具有酪氨酸羟基化活性。为了确定其可能的功能,我们分析了TH的表达谱。在即将孵化的幼虫表皮开始鞣化的阶段,卵中存在TH mRNA和蛋白质,蜕皮幼虫的体表中也存在。体表中TH的量与表皮鞣化程度相关。与在血细胞中组成性表达且存在于血浆中的PO不同,TH在血细胞和脂肪体中因免疫挑战而上调,并保留在细胞内。这些数据表明,TH是烟草天蛾表皮鞣化和免疫所必需的。基于许多研究的综合信息,我们提出了一个模型,其中TH是表皮鞣化和免疫相关黑色素生成所需DOPA的主要产生者。