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首页> 外文期刊>Cancer science. >Heat shock protein 70-binding protein 1 is highly expressed in high-grade gliomas, interacts with multiple heat shock protein 70 family members, and specifically binds brain tumor cell surfaces.
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Heat shock protein 70-binding protein 1 is highly expressed in high-grade gliomas, interacts with multiple heat shock protein 70 family members, and specifically binds brain tumor cell surfaces.

机译:热激蛋白70结合蛋白1在高级神经胶质瘤中高度表达,与多个热激蛋白70家族成员相互作用,并特异性结合脑肿瘤细胞表面。

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Chaperone proteins and heat shock proteins (HSP) are essential components of cellular protein folding systems under normal conditions; their expression and activities are upregulated during stress. Chronically stressed tumors frequently exhibit high chaperone protein levels, exploiting their anti-apoptotic mechanisms and general proteome homeostasis amidst a background of genetic instability. Co-chaperones interact with chaperones as malleable regulatory components of protein folding activity and may represent a conduit for modification of chaperone activity to the detriment of the tumor. We have initially characterized one such co-chaperone, heat shock protein 70-binding protein (HspBP) 1 from human brain tumors, their xenografts grown in immune-compromised mice, and in syngeneic murine models in immune-competent mice. Immunohistochemical analyses show HspBP1 overexpression (with unusual subcellular localizations) in patient brain tumors relative to normal brain tissue. This holds true for the xenograft and syngeneic murine tumor models. In biochemical affinity chromatography assays, HspBP1 interacts with members of the HSP70 family from brain tumor lysates and from surface-derived samples, including HSP70, glucose regulated protein (GRP)75, GRP78, and HSP110. From normal brain lysates, only heat shock cognate (HSC)70, GRP75, and HSP110 bind to HspBP1. FACS analyses indicate that HspBP1 binds to brain tumor cell surfaces, possibly via HSP70 family members, and internalizes into cells. This has implications for HspBP1 biology as well as its utility as a tumor-targeting agent. Our results suggest that HspBP1 may play a role in tumor (dys)regulation of chaperone proteins, and that HspBP1 may have extracellular roles with therapeutic implications.
机译:伴侣蛋白和热休克蛋白(HSP)是正常条件下细胞蛋白折叠系统的重要组成部分。在压力下,它们的表达和活性上调。长期处于应激状态的肿瘤在遗传不稳定的背景下,利用其抗凋亡机制和一般蛋白质组稳态,经常表现出较高的伴侣蛋白水平。伴侣蛋白与伴侣蛋白相互作用作为蛋白质折叠活性的可延展的调节成分,并且可以代表修饰伴侣蛋白活性以损害肿瘤的导管。我们最初已经从人脑肿瘤,在免疫受损的小鼠中以及在具有免疫能力的小鼠的同系鼠模型中生长的异种移植物中鉴定了一种这样的伴侣蛋白,热休克蛋白70结合蛋白(HspBP)1。免疫组织化学分析显示,相对于正常脑组织,患者脑肿瘤中HspBP1过表达(具有异常的亚细胞定位)。对于异种移植和同系鼠肿瘤模型,这是正确的。在生化亲和色谱分析中,HspBP1与脑肿瘤裂解液和表面来源的样品(包括HSP70,葡萄糖调节蛋白(GRP)75,GRP78和HSP110)中的HSP70家族成员相互作用。从正常的大脑裂解物中,只有热休克同源(HSC)70,GRP75和HSP110与HspBP1结合。 FACS分析表明,HspBP1可能通过HSP70家族成员与脑肿瘤细胞表面结合,并内化到细胞中。这对HspBP1生物学及其作为肿瘤靶向剂的实用性具有影响。我们的结果表明,HspBP1可能在伴侣蛋白的肿瘤(失调)调节中起作用,并且HspBP1可能具有细胞外作用,具有治疗意义。

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