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FNIP2 Protein (AA 1-1114) (Strep Tag)

Crystallography grade FNIP2 Origin: Human Host: Tobacco (Nicotiana tabacum) Recombinant >80 % as determined by SDS PAGE, Size Exclusion Chromatography and Western Blot. WB, ELISA, SDS
Catalog No. ABIN3092610
  • Target See all FNIP2 Proteins
    FNIP2 (Folliculin Interacting Protein 2 (FNIP2))
    Protein Type
    Recombinant
    Protein Characteristics
    AA 1-1114
    Origin
    • 1
    • 1
    Human
    Source
    • 1
    • 1
    Tobacco (Nicotiana tabacum)
    Purification tag / Conjugate
    This FNIP2 protein is labelled with Strep Tag.
    Application
    Western Blotting (WB), ELISA, SDS-PAGE (SDS)
    Sequence
    MAPTLLQKLF NKRGSSGSSA AASAQGRAPK EGPAFSWSCS EFDLNEIRLI VYQDCDRRGR QVLFDSKAVQ KIEEVTAQKT EDVPIKISAK CCQGSSSVSS SSSSSISSHS SSGGSSHHAK EQLPKYQYTR PASDVNMLGE MMFGSVAMSY KGSTLKIHYI RSPPQLMISK VFSARMGSFC GSTNNLQDSF EYINQDPNLG KLNTNQNSLG PCRTGSNLAH STPVDMPSRG QNEDRDSGIA RSASLSSLLI TPFPSPSSST SSSSSYQRRW LRSQTTSLEN GIIPRRSTDE TFSLAEETCS SNPAMVRRKK IAISIIFSLC EKEEAQRNFQ DFFFSHFPLF ESHMNRLKSA IEKAMISCRK IAESSLRVQF YVSRLMEALG EFRGTIWNLY SVPRIAEPVW LTMMSGTLEK NQLCQRFLKE FTLLIEQINK NQFFAALLTA VLTYHLAWVP TVMPVDHPPI KAFSEKRTSQ SVNMLAKTHP YNPLWAQLGD LYGAIGSPVR LTRTVVVGKQ KDLVQRILYV LTYFLRCSEL QENQLTWSGN HGEGDQVLNG SKIITALEKG EVEESEYVVI TVRNEPALVP PILPPTAAER HNPWPTGFPE CPEGTDSRDL GLKPDKEANR RPEQGSEACS AGCLGPASDA SWKPQNAFCG DEKNKEAPQD GSSRLPSCEV LGAGMKMDQQ AVCELLKVEM PTRLPDRSVA WPCPDRHLRE KPSLEKVTFQ IGSFASPESD FESRMKKMEE RVKACGPSLE ASEAADVAQD PQVSRSPFKP GFQENVCCPQ NRLSEGDEGE SDKGFAEDRG SRNDMAADIA GQLSHAADLG TASHGAGGTG GRRLEATRGL YVKAAEGPVL EPVAPRCVQR GPGLVAGANI PCGDDNKKAN FRTEGDIPRN ESSDSALGDS DDEACASAML DLGHGGDRTG GSLEVELPLP RSQSISTQNV RNFGRSLLAG YCPTYMPDLV LHGTGSDEKL KQCLVADLVH TVHHPVLDEP IAEAVCIIAD TDKWSVQVAT SQRKVTDNMK LGQDVLVSSQ VSSLLQSILQ LYKLHLPADF CIMHLEDRLQ EMYLKSKMLS EYLRGHTRVH VKELGVVLGI ESNDLPLLTA IASTHSPYVA QILL
    Sequence without tag. The proposed Strep-Tag is based on experience s with the expression system, a different complexity of the protein could make another tag necessary. In case you have a special request, please contact us.
    Characteristics
    Key Benefits:
    • Made in Germany - from design to production - by highly experienced protein experts.
    • Protein expressed with ALiCE® and purified by multi-step, protein-specific process to ensure correct folding and modification.
    • These proteins are normally active (enzymatically functional) as our customers have reported (not tested by us and not guaranteed).
    • State-of-the-art algorithm used for plasmid design (Gene synthesis).

    This protein is a made-to-order protein and will be made for the first time for your order. Our experts in the lab will ensure that you receive a correctly folded protein.

    The big advantage of ordering our made-to-order proteins in comparison to ordering custom made proteins from other companies is that there is no financial obligation in case the protein cannot be expressed or purified.


    Expression System:
    • ALiCE®, our Almost Living Cell-Free Expression System is based on a lysate obtained from Nicotiana tabacum c.v.. This contains all the protein expression machinery needed to produce even the most difficult-to-express proteins, including those that require post-translational modifications.
    • During lysate production, the cell wall and other cellular components that are not required for protein production are removed, leaving only the protein production machinery and the mitochondria to drive the reaction. During our lysate completion steps, the additional components needed for protein production (amino acids, cofactors, etc.) are added to produce something that functions like a cell, but without the constraints of a living system - all that's needed is the DNA that codes for the desired protein!

    Concentration:
    • The concentration of our recombinant proteins is measured using the absorbance at 280nm.
    • The protein's absorbance will be measured in several dilutions and is measured against its specific reference buffer.
    • We use the Expasy's ProtParam tool to determine the absorption coefficient of each protein.

    Purification
    Two step purification of proteins expressed in Almost Living Cell-Free Expression System (ALiCE®):
    1. In a first purification step, the protein is purified from the cleared cell lysate using StrepTag capture material. Eluate fractions are analyzed by SDS-PAGE.
    2. Protein containing fractions of the best purification are subjected to second purification step through size exclusion chromatography. Eluate fractions are analyzed by SDS-PAGE and Western blot.
    Purity
    >80 % as determined by SDS PAGE, Size Exclusion Chromatography and Western Blot.
    Endotoxin Level
    Low Endotoxin less than 1 EU/mg (< 0.1 ng/mg)
    Grade
    Crystallography grade
  • Application Notes
    In addition to the applications listed above we expect the protein to work for functional studies as well. As the protein has not been tested for functional studies yet we cannot offer a guarantee though.
    Comment

    ALiCE®, our Almost Living Cell-Free Expression System is based on a lysate obtained from Nicotiana tabacum c.v.. This contains all the protein expression machinery needed to produce even the most difficult-to-express proteins, including those that require post-translational modifications.
    During lysate production, the cell wall and other cellular components that are not required for protein production are removed, leaving only the protein production machinery and the mitochondria to drive the reaction. During our lysate completion steps, the additional components needed for protein production (amino acids, cofactors, etc.) are added to produce something that functions like a cell, but without the constraints of a living system - all that's needed is the DNA that codes for the desired protein!

    Restrictions
    For Research Use only
  • Format
    Liquid
    Buffer
    The buffer composition is at the discretion of the manufacturer. If you have a special request, please contact us.
    Handling Advice
    Avoid repeated freeze-thaw cycles.
    Storage
    -80 °C
    Storage Comment
    Store at -80°C.
    Expiry Date
    Unlimited (if stored properly)
  • Target
    FNIP2 (Folliculin Interacting Protein 2 (FNIP2))
    Alternative Name
    FNIP2 (FNIP2 Products)
    Synonyms
    LOC797213 Protein, FNIPL Protein, MAPO1 Protein, D630023B12Rik Protein, mKIAA1450 Protein, RGD1562174 Protein, folliculin interacting protein 2 Protein, si:ch211-42i9.8 Protein, FNIP2 Protein, si:ch211-42i9.8 Protein, fnip2 Protein, Fnip2 Protein
    Background
    Folliculin-interacting protein 2 (FNIP1-like protein) (O6-methylguanine-induced apoptosis 1 protein),FUNCTION: Binding partner of the GTPase-activating protein FLCN: involved in the cellular response to amino acid availability by regulating the non-canonical mTORC1 signaling cascade controlling the MiT/TFE factors TFEB and TFE3 (PubMed:18663353, PubMed:31672913, PubMed:36103527). Required to promote FLCN recruitment to lysosomes and interaction with Rag GTPases, leading to activation of the non-canonical mTORC1 signaling (By similarity). In low-amino acid conditions, component of the lysosomal folliculin complex (LFC) on the membrane of lysosomes, which inhibits the GTPase-activating activity of FLCN, thereby inactivating mTORC1 and promoting nuclear translocation of TFEB and TFE3 (PubMed:31672913, PubMed:36103527). Upon amino acid restimulation, disassembly of the LFC complex liberates the GTPase-activating activity of FLCN, leading to activation of mTORC1 and subsequent inactivation of TFEB and TFE3 (PubMed:31672913). Together with FLCN, regulates autophagy: following phosphorylation by ULK1, interacts with GABARAP and promotes autophagy (PubMed:25126726). In addition to its role in mTORC1 signaling, also acts as a co-chaperone of HSP90AA1/Hsp90: inhibits the ATPase activity of HSP90AA1/Hsp90, leading to activate both kinase and non-kinase client proteins of HSP90AA1/Hsp90 (PubMed:18403135). Acts as a scaffold to load client protein FLCN onto HSP90AA1/Hsp90 (PubMed:18403135). Competes with the activating co-chaperone AHSA1 for binding to HSP90AA1, thereby providing a reciprocal regulatory mechanism for chaperoning of client proteins (PubMed:18403135). May play a role in the signal transduction pathway of apoptosis induced by O6-methylguanine-mispaired lesions (By similarity). {ECO:0000250|UniProtKB:Q80TD3, ECO:0000250|UniProtKB:Q8TF40, ECO:0000269|PubMed:18403135, ECO:0000269|PubMed:18663353, ECO:0000269|PubMed:25126726, ECO:0000269|PubMed:31672913, ECO:0000269|PubMed:36103527}.
    Molecular Weight
    122.1 kDa
    UniProt
    Q9P278
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