HSPA8

  • Official Full Name

    heat shock 70kDa protein 8
  • Overview

    This gene encodes a member of the heat shock protein 70 family, which contains both heat-inducible and constitutively expressed members. This protein belongs to the latter group, which are also referred to as heat-shock cognate proteins. It functions as a chaperone, and binds to nascent polypeptides to facilitate correct folding. It also functions as an ATPase in the disassembly of clathrin-coated vesicles during transport of membrane components through the cell. Alternatively spliced transcript variants encoding different isoforms have been found for this gene.
  • Synonyms

    2410008N15Rik;Constitutive heat shock protein 70;Heat shock 70 kDa protein 8;Heat shock 70kD protein 10;Heat shock 70kD protein 8;Heat shock 70kDa protein 8;Heat shock cognate 71 kDa protein;Heat shock cognate 71 kDa protein.;Heat shock cognate protein 54;Heat shock cognate protein 71 kDa;Heat shock cognate protein 71-kDa;Heat shock protein 8;Heat shock protein A8;Heat-shock70-KD protein 10, formerly;<br/>HSC54;HSC71;Hsc73;HSP71;HSP73;HSP7C_HUMAN;HSPA10;HSPA8;LAP1;Lipopolysaccharide associated protein 1;LPS associated protein 1;LPS associated protein;MGC102007;MGC106514;MGC114311;MGC118485;MGC131511;MGC29929;N-myristoyltransferase inhibitor protein 71;NIP71

Recombinant Proteins

  • Human
  • Rhesus macaque
  • Bovine
  • Rat
  • Zebrafish
  • Chicken
  • Mouse
  • Cattle
  • E.coli
  • Mammalian Cells
  • Human
  • Wheat Germ
  • HEK293
  • In Vitro Cell Free System
  • Yeast
  • His
  • Non
  • MBP
  • GST
  • Avi
  • Fc
  • DDK
  • Myc
  • Flag
Cat.# Product name Source (Host) Species Tag Protein Length Price
HSPA8-3897H Recombinant Human HSPA8, His tagged E.coli Human His 1-646 a.a.
HSPA8-1558H Active Recombinant Human HSPA8 protein, His-tagged E.coli Human His Full L. 1-646 a.a.
HSPA8-28200TH Active Recombinant Human HSPA8, His-tagged E.coli Human His
HSPA8-1809H Recombinant Human Heat Shock 70kDa Protein 8 E.coli Human Non
HSPA8-2166R Recombinant Rhesus monkey HSPA8 Protein, His-tagged Mammalian Cells Rhesus macaque His
HSPA8-2650B Recombinant Bovine Heat Shock 70kDa Protein 8 E.coli Bovine Non
HSPA8-274H Recombinant Human HSPA8 protein, His/MBP-tagged E.coli Human His&MBP 419-601 aa
HSPA8-275H Recombinant Human HSPA8 protein, His/MBP-tagged E.coli Human His&MBP 222-369 aa
HSPA8-276H Recombinant Human HSPA8 protein, His/MBP-tagged E.coli Human His&MBP 22-120 aa
HSPA8-2949R Recombinant Rat HSPA8 Protein Mammalian Cells Rat His
HSPA8-4712H Recombinant Human Heat Shock 70kDa Protein 8, His-tagged Human Human His 1-646 a.a.
HSPA8-489H Recombinant Human HSPA8 Mammalian Cells Human His
HSPA8-5111H Recombinant Human HSPA8 Protein, GST-tagged Wheat Germ Human GST
HSPA8-6163Z Recombinant Zebrafish HSPA8 Mammalian Cells Zebrafish His
HSPA8-6561C Recombinant Chicken HSPA8 Mammalian Cells Chicken His
HSPA8-7911M Recombinant Mouse HSPA8 Protein Mammalian Cells Mouse His
HSPA8-8257C Recombinant Cattle HSPA8 protein, His-tagged E.coli Cattle His Asp534~Gly615
HSPA8-8258C Recombinant Chicken HSPA8 protein, His-tagged E.coli Chicken His Asp534~Gly615
Hspa8-8259M Recombinant Mouse Hspa8 protein, His-tagged E.coli Mouse His Asp534~Gly615
Hspa8-8260R Recombinant Rat Hspa8 protein, His-tagged E.coli Rat His Asp534~Gly615
HSPA8-5353HCL Recombinant Human HSPA8 293 Cell Lysate HEK293 Human Non
HSPA8-018H Recombinant Human HSPA8 Protein, His-tagged E.coli Human His 2-646
HSPA8-069H Recombinant Human HSPA8 Protein, His-tagged E.coli Human His 2-646
HSPA8-1121H Recombinant Human HSPA8 Protein, His (Fc)-Avi-tagged HEK293 Human Avi&Fc&His
HSPA8-1121H-B Recombinant Human HSPA8 Protein Pre-coupled Magnetic Beads HEK293 Human
Hspa8-1174M Recombinant Mouse Hspa8 Protein, MYC/DDK-tagged HEK293 Mouse DDK&Myc
HSPA8-1987R Recombinant Rhesus Macaque HSPA8 Protein, His (Fc)-Avi-tagged HEK293 Rhesus macaque Avi&Fc&His
HSPA8-1987R-B Recombinant Rhesus Macaque HSPA8 Protein Pre-coupled Magnetic Beads HEK293 Rhesus macaque
HSPA8-2604R Recombinant Rat HSPA8 Protein, His (Fc)-Avi-tagged HEK293 Rat Avi&Fc&His
HSPA8-2604R-B Recombinant Rat HSPA8 Protein Pre-coupled Magnetic Beads HEK293 Rat
HSPA8-2634H Recombinant Human HSPA8 protein(401-620 aa), C-His-tagged E.coli Human His 401-620 aa
HSPA8-342HFL Recombinant Full Length Human HSPA8 Protein, C-Flag-tagged Mammalian Cells Human Flag Full L.
HSPA8-3441H Recombinant Human HSPA8 Protein (Asp534-Gly615), N-His tagged E.coli Human His Asp534-Gly615
HSPA8-3962HF Recombinant Full Length Human HSPA8 Protein, GST-tagged In Vitro Cell Free System Human GST Full L. 646 amino acids
HSPA8-4358M Recombinant Mouse HSPA8 Protein, His (Fc)-Avi-tagged HEK293 Mouse Avi&Fc&His
HSPA8-4358M-B Recombinant Mouse HSPA8 Protein Pre-coupled Magnetic Beads HEK293 Mouse
HSPA8-49M Recombinant Mouse HSPA8 Protein, His-tagged E.coli Mouse His
Hspa8-532M Recombinant Mouse Hspa8 protein, His-tagged Yeast Mouse His 2-646aa
Hspa8-5422M Recombinant Mouse Hspa8 protein, His&Myc-tagged E.coli Mouse His&Myc 2-646aa
HSPA8-5430H Recombinant Human HSPA8 protein, His-tagged Yeast Human His 2-646aa

    Background

    HSPA8-9.jpg

    Fig1. The role of HSC70 in MHC class II antigen trafficking and presentation. (Sarah N Deffit, 2015)

    What is HSPA8 protein?

    HSPA8 (heat shock protein family A (Hsp70) member 8) gene is a protein coding gene which situated on the long arm of chromosome 11 at locus 11q24. HSPA8, also known as HSC70, belongs to the heat shock protein 70 family which contains both heat-inducible and constitutively expressed members. The latter are called heat-shock cognate proteins. This protein is a heat-shock cognate protein. HSPA8 binds to nascent polypeptides to facilitate correct folding. The HSPA8 protein is consisted of 646 amino acids and its molecular mass is approximately 70.9 kDa.

    What is the function of HSPA8 protein?

    The HSPA8 protein is a versatile molecular chaperone whose main function is to help other proteins fold, assemble, locate, and degrade properly. It is one of the key factors in cells' response to environmental stress (such as high temperature, oxidative stress, etc.) and protects cells from damage by maintaining protein homeostasis. HSPA8 is also involved in regulating cell signaling and immune responses, maintaining cell health by recognizing misfolded or damaged proteins and promoting their repair or removal.

    HSPA8 Related Signaling Pathway

    When cells are subjected to external stimuli (such as heat shock, oxidative stress, drugs, etc.) leading to abnormal folding and aggregation of proteins, HSPA8 is activated and participates in the refolding and aggregation of misfolded proteins. HSPA8 is associated with autophagy protein, which is involved in regulating the process of autophagy. HSPA8 is involved in the regulation of various signaling pathways, affecting cell survival and apoptosis, cell proliferation and differentiation, such as the Wnt/β-Catenin signaling pathway.

    HSPA8 Related Diseases

    HSPA8 expression was up-regulated in a variety of cancers, including colorectal cancer, breast cancer, and gastric cancer. It is involved in the genesis and development of tumors by regulating cell proliferation, apoptosis and autophagy. It is upregulated in neurodegenerative diseases such as Alzheimer's and Parkinson's, and plays a role in some cardiovascular and inflammatory diseases.

    Bioapplications of HSPA8

    Detection of HSPA8 levels in the body can help diagnose, monitor disease progression, and evaluate treatment effects. Because of its role in tumorigenesis and progression, HSPA8 is considered a potential therapeutic target.

    Case Study

    Case study 1: Lei Wang, 2022

    Porcine reproductive and respiratory syndrome virus (PRRSV), a porcine arterivirus, causes severe financial losses to global swine industry. Despite much research, the molecular mechanisms of PRRSV infection remains to be fully elucidated.

    In this study, the researchers uncovered the involvement of heat shock protein member 8 (HSPA8) in PRRSV attachment and internalization during infection for the first time. In detail, HSPA8 was identified to interact with PRRSV glycoprotein 4 (GP4). Chemical inhibitors and specific small interference RNAs (siRNAs) targeting HSPA8 significantly suppressed PRRSV infection as indicated by decreased viral RNA abundance, infectivity, and titers. these results demonstrate that HSPA8 is important for PRRSV attachment and internalization, which is a potential target to prevent and control the viral infection.

    HSPA8-3.jpg

    Fig1. GP4-mCherry co-localized with endogenous HSPA8. HEK-293T cells were transfected with the plasmid expressing GP4-mCherry (red) or mCherry (red) for 24 h, and stained with anti-HSPA8 pAbs.

    HSPA8-4.jpg
    Fig2. HSPA8 PB domain interacted with GP4-mCherry.

    Case study 2: Riccardo Sirtori, 2020

    Heat shock protein 70 family was demonstrated to play a critical role in protein homeostasis, a process profoundly impaired in neurodegenerative disorders. Neurodegenerative diseases are characterized by the accumulation of different kind of proteins and the formation of insoluble aggregates which are toxic for neurons. To explore the role of heat shock protein family 70 (in particular HSPA8 and HSPA1A) in the accumulation of proteins implied in neurodegeneration pathogenesis, in this study the researchers verified in human SH-SY5Y neuroblastoma cells how HSPA8 or HSPA1A knock-down can affect protein levels of tau, superoxide dismutase 1 and α-synuclein. The results suggest HSPA8 can play an important role in the homeostasis of tau, superoxide dismutase 1 and α-synuclein and in the balance between α-synuclein oligomeric and monomeric forms.

    HSPA8-5.jpg

    Fig3. siRNA-mediated knock-down of HSPA8 and HSPA1A in SH-SY5Y cell line. Relative protein levels of HSPA8 and HSPA1A after silencing of HSPA8 or HSPA1A.

    HSPA8-6.jpg
    Fig4. Representative Western blot images in SH-SY5Y knocked-down for HSPA8 or HSPA1A.

    Quality Guarantee

    Involved Pathway

    HSPA8 involved in several pathways and played different roles in them. We selected most pathways HSPA8 participated on our site, such as Spliceosome,MAPK signaling pathway,Protein processing in endoplasmic reticulum, which may be useful for your reference. Also, other proteins which involved in the same pathway with HSPA8 were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.

    Pathway Name Pathway Related Protein
    Legionellosis IL-8,CASP7,CASP9,ITGB2,HSPA2,VCP,CR1,TLR4,CXCL3,TLR2
    MAPK signaling pathway CASP3A,PRKACG,CACNB3A,CDC25B,MAP2K4,ATF4B1,MAP3K6,CACNA1H,RAC2,FGF2
    Measles IRAK1,PRKCQ,IL2RB,TLR2,IL2RA,TNFRSF10A,FASLG,PIK3R2,Cd209g,RAB9B
    Protein processing in endoplasmic reticulum MAN1C1,MBTPS1,CANX,UBE2D1A,NPLOC4,HSPH1,SELS,DNAJA2,HSPA1L,DNAJB11
    Antigen processing and presentation HLA-DQA2,KLRC3,HSPA4,RFXANK,HSPA5,TAP2,TNF,H2-Q10,NFYB,KLRC2
    Endocytosis SH3GL3,TGFBR2,IL2RA,ERBB3B,DNM2B,ARPC5,HSPA1A,STRUMPELLIN,SNX6,RAB10
    Influenza A PIK3CA,TNFRSF10A,HLA-DRB5,ICAM1,HNRNPUL1,PRSS3,IL1A,IFNGR1,MYD88,BLB2
    Epstein-Barr virus infection HDAC1,POLR2E,SND1,PSMD3,HLA-C,PIK3CG,CD58,POLR3B,CD44,VIM
    Spliceosome SF3B2,PPIE,NCBP2,SNRPA1,THOC2,CHERP,WBP11,CWC15,HSP70,HSPA1B

    HSPA8-7.jpg

    Fig1. Model depicts the involvement of HSPA8 in PRRSV attachment and internalization. HSPA8 functions as a co-factor for PRRSV infection. (Lei Wang, 2022)

    HSPA8-8.jpg

    Fig2. Proposed model for HSC70-mediated Golgi association of ARL5B. (Ebsy Jaimon, 2021)

    Protein Function

    HSPA8 has several biochemical functions, for example, ATP binding,ATPase activity,ATPase activity, coupled. Some of the functions are cooperated with other proteins, some of the functions could acted by HSPA8 itself. We selected most functions HSPA8 had, and list some proteins which have the same functions with HSPA8. You can find most of the proteins on our site.

    Function Related Protein
    enzyme binding SUPT5H,NPM2,HIF1A,Il6ra,EGFR,RPA2,PTPLAD2,A2M,MAPK8,KRT79
    unfolded protein binding LRPAP1,CHAF1A,HSPA1L,TTC1,HSP90AA1.2,SCG5,HSP90AA1.1,TBCA,CRYAA,CALRL2
    protein binding FARS2,TRP63,ZNF385C,SUCLA2,STX4A,PYGL,COX4I2,HJURP,PALM,YBX1
    C3HC4-type RING finger domain binding HSPA1B,PINK1,DNAJA1,KCNH2,HSPA1A
    ATPase activity CLPB,MLH1,ABCG3,ABCB3L1,ABCA6,INO80,PSMD6,ABCG2D,ABCD3,ABCB1A
    poly(A) RNA binding FLYWCH2,PRMT1,PRPF40A,ETF1A,ZFML,NOP56,SNRPC,EIF2S1B,RP9,HIST2H4
    G-protein coupled receptor binding GNAT2,RSPO2,ARRB2,APLN,GHRL,ITGB4,GNA14,PICK1,GNA13B,GNA11A
    ATPase activity, coupled NSF,HSP104,HSPA1B,MYH3,VPS4B,ABCB1A,HSPA6,PEX1,VPS4A,HSPA1A
    ATP binding HSP104,SNRKB,MAP3K4,IKBKE,PIM1,DDX31,CLCN4-2,TTN,IDH3G,LIMK1A

    Interacting Protein

    HSPA8 has direct interactions with proteins and molecules. Those interactions were detected by several methods such as yeast two hybrid, co-IP, pull-down and so on. We selected proteins and molecules interacted with HSPA8 here. Most of them are supplied by our site. Hope this information will be useful for your research of HSPA8.

    STUB1;LRRK2;HSPBP1;EGFR

    Resources

    References

    • Meleady, P; Doolan, P; et al. Sustained productivity in recombinant Chinese Hamster Ovary (CHO) cell lines: proteome analysis of the molecular basis for a process-related phenotype. BMC BIOTECHNOLOGY 11:-(2011).
    • Carpenter, JE; Jackson, W; et al. Insulin-Degrading Enzyme Binds to the Nonglycosylated Precursor of Varicella-Zoster Virus gE Protein Found in the Endoplasmic Reticulum. JOURNAL OF VIROLOGY 84:847-855(2010).

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