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BAG3在牛乳头瘤病毒介导的自噬中的作用。

Role of BAG3 in bovine Deltapapillomavirus-mediated autophagy.

作者信息

Roperto Sante

机构信息

Dipartimento di Medicina Veterinaria e Produzioni Animali, Università degli Studi di Napoli Federico II, Napoli, Italia.

出版信息

J Cell Biochem. 2022 Jan;123(1):59-64. doi: 10.1002/jcb.30193. Epub 2021 Dec 10.

Abstract

Bovine Deltapapillomavirus genus (δPV), comprises four members that are highly pathogenic and are frequently associated with bladder tumors of adult cattle and water buffaloes. In particular, bovine δPV-2 and δPV-13 are commonly found in urinary bladder tumors in adult large ruminants reared fully or partially on hilly/mountain pasturelands rich in bracken fern (Pteridium spp.) as the urinary bladder of the herbivores is the specific target for bracken genotoxins such as ptaquiloside (PT). PT is a sesquiterpenoid responsible for alkylation of adenine of codon 61 of gene H-Ras, which results in Glutamine 61 substitution that is essential for guanosine triphosphate (GTP) hydrolysis. Glutamine substitution at position 61 impairs the intrinsic GTPase activity. Therefore, active GTP-bound conformations (Ras-GTP) accumulate in cells, thereby causing abnormal cell proliferation and differentiation. The aim of the present study is to stress how bovine δPVs upregulate different forms of selective autophagy, of which BAG3 is a key player. BAG3 plays a central role in autophagy and acts as a multifunctional hub for an interaction network at the cytosolic and mitochondrial level. BAG3 is a functional partner of bovine δPV E5 oncoprotein and forms a complex with molecular chaperones Hsc70/Hsp70/Hsp8B and with cochaperone CHIP. BAG3 interacts with Synpo2. It is believed that this interaction has a crucial role for autophagosome (mitophagosome) formation. Furthermore, in urothelial cells infected by bovine δPVs, BAG3 interacts with parkin and some receptors such as BNIP3/FUNDC1, which suggests that BAG3 is involved in both parkin-dependent and -independent mitophagy that appear upregulate in bladder carcinogenesis of cattle induced by bovine δPVs. Surprisingly, BAG3 interacts also with ERAS, a protein encoded by the ERas gene, a novel member of the RAS family. Unlike in humans, the ERas gene is a functional gene in the cells of adult cattle, and it appears to play a role in bovine BAG3-mediated selective autophagy, including mitophagy observed in urothelial cells spontaneously infected with bovine papillomavirus.

摘要

牛δ乳头瘤病毒属(δPV)由四个成员组成,它们具有高度致病性,常与成年牛和水牛的膀胱肿瘤相关。特别是,牛δPV - 2和δPV - 13常见于完全或部分饲养在富含蕨菜(蕨属植物)的山地/高山牧场上的成年大型反刍动物的膀胱肿瘤中,因为草食动物的膀胱是蕨菜基因毒素如ptaquiloside(PT)的特定靶标。PT是一种倍半萜烯,负责H - Ras基因第61位密码子腺嘌呤的烷基化,导致谷氨酰胺61替代,这对于鸟苷三磷酸(GTP)水解至关重要。第61位的谷氨酰胺替代会损害内在的GTP酶活性。因此,细胞中积累了活性GTP结合构象(Ras - GTP),从而导致细胞异常增殖和分化。本研究的目的是强调牛δPV如何上调不同形式的选择性自噬,其中BAG3是关键参与者。BAG3在自噬中起核心作用,并作为细胞质和线粒体水平相互作用网络的多功能枢纽。BAG3是牛δPV E5癌蛋白的功能伙伴,与分子伴侣Hsc70 / Hsp70 / Hsp8B以及共伴侣CHIP形成复合物。BAG3与Synpo2相互作用。据信这种相互作用对自噬体(线粒体自噬体)的形成至关重要。此外,在被牛δPV感染的尿路上皮细胞中,BAG3与帕金蛋白以及一些受体如BNIP3 / FUNDC1相互作用,这表明BAG3参与了牛δPV诱导的牛膀胱癌发生过程中上调的帕金蛋白依赖性和非依赖性线粒体自噬。令人惊讶的是,BAG3还与ERAS相互作用,ERAS是一种由ERas基因编码的蛋白质,是RAS家族的一个新成员。与人类不同,ERas基因在成年牛细胞中是一个功能基因,它似乎在牛BAG3介导的选择性自噬中起作用,包括在自发感染牛乳头瘤病毒的尿路上皮细胞中观察到的线粒体自噬。

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