Zuo Hao, Wong Yung H
Division of Life Sciences, and the Biotechnology Research Institute, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Present address: Department of Pharmacology, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX, 75390, USA.
BMC Cancer. 2015 Oct 24;15:775. doi: 10.1186/s12885-015-1802-z.
G proteins are known to modulate various growth signals and are implicated in the regulation of tumorigenesis. The tumor suppressor Fhit is a newly identified interaction partner of Gq proteins that typically stimulate the phospholipase C pathway. Activated Gαq subunits have been shown to interact directly with Fhit, up-regulate Fhit expression and enhance its suppressive effect on cell growth and migration. Other signaling molecules may be involved in modulating Gαq/Fhit interaction.
To test the relationship of PLCβ with the interaction between Gαq and Fhit, co-immunoprecipication assay was performed on HEK293 cells co-transfected with different combinations of Flag-Fhit, Gα16, Gα16QL, pcDNA3 vector, and PLCβ isoforms. Possible associations of Fhit with other effectors of Gαq were also demonstrated by co-immunoprecipitation. The regions of Gαq for Fhit interaction and PLCβ stimulation were further evaluated by inositol phosphates accumulation assay using a series of Gα16/z chimeras with discrete regions of Gα16 replaced by those of Gαz.
PLCβ1, 2 and 3 interacted with Fhit regardless of the expression of Gαq. Expression of PLCβ increased the affinities of Fhit for both wild-type and activated Gαq. Swapping of the Fhit-interacting α2-β4 region of Gαq with Gαi eliminated the association of Gαq with Fhit without affecting the ability of the mutant to stimulate PLCβ. Other effectors of Gαq including RGS2 and p63RhoGEF were unable to interact with Fhit.
PLCβ may participate in the regulation of Fhit by Gq in a unique way. PLCβ interacts with Fhit and increases the interaction between Gαq and Fhit. The Gαq/PLCβ/Fhit complex formation points to a novel signaling pathway that may negatively regulate tumor cell growth.
已知G蛋白可调节多种生长信号,并参与肿瘤发生的调控。肿瘤抑制因子Fhit是新发现的Gq蛋白相互作用伙伴,Gq蛋白通常刺激磷脂酶C途径。已表明激活的Gαq亚基可直接与Fhit相互作用,上调Fhit表达并增强其对细胞生长和迁移的抑制作用。其他信号分子可能参与调节Gαq/Fhit相互作用。
为检测PLCβ与Gαq和Fhit之间相互作用的关系,对共转染了不同组合的Flag-Fhit、Gα16、Gα16QL、pcDNA3载体和PLCβ亚型的HEK293细胞进行了免疫共沉淀分析。Fhit与Gαq其他效应器的可能关联也通过免疫共沉淀得到证实。使用一系列Gα16/z嵌合体(Gα16的离散区域被Gαz的相应区域取代)通过肌醇磷酸积累试验进一步评估Gαq与Fhit相互作用及PLCβ刺激的区域。
无论Gαq的表达情况如何,PLCβ1、2和3均与Fhit相互作用。PLCβ的表达增加了Fhit对野生型和激活型Gαq的亲和力。将Gαq与Fhit相互作用的α2-β4区域与Gαi进行交换,消除了Gαq与Fhit的关联,而不影响突变体刺激PLCβ的能力。Gαq的其他效应器,包括RGS2和p63RhoGEF,均无法与Fhit相互作用。
PLCβ可能以独特方式参与Gq对Fhit的调控。PLCβ与Fhit相互作用并增加Gαq与Fhit之间的相互作用。Gαq/PLCβ/Fhit复合物的形成指向一条可能对肿瘤细胞生长起负调控作用的新信号通路。