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Zirconium(IV)+isopropoxide+isopropanol+complex


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Supplier:  Thermo Scientific Chemicals
Description:   UN3180,Powder, Ampouled under argon,DANGER: FLAMMABLE, CORROSIVE, burns skin and eyes,1g,5g,FLAMMABLE SOLID,CORROSIVE
MSDS SDS
Supplier:  THERMO FISHER SCIENTIFIC CHEMICALS
Description:   Aluminium isopropoxide 98%
Supplier:  Thermo Scientific Chemicals
Description:   MDL: MFCD00008870
MSDS SDS
Supplier:  BeanTown Chemical
Description:   CAS: 683-60-3; EC No: 211-673-7; MDL No: MFCD00061566 UN No: UN3206; Haz Class: 4.2 (8); Packing Group: II Crystalline; Molecular Formula: C3H7NaO; MW: 82.08 Melting Point: 70-75° Air Sensitive, Moisture Sensitive
MSDS SDS
Supplier:  MilliporeSigma
MSDS SDS
Supplier:  BeanTown Chemical
Description:   CAS: 16761-83-4; MDL No: MFCD00145347 UN No: UN1993; Haz Class: 3; Packing Group: II Liquid; Molecular Formula: C15H35O5Ta; MW: 476.39 Moisture Sensitive
Supplier:  Thermo Scientific Chemicals
Description:   Applications: Precursor used in sol-gel process
MSDS SDS
Supplier:  BeanTown Chemical
Description:   CAS: 57219-64-4; EC No: 260-633-5; MDL No: MFCD00172265 Powder; Linear Formula: (ZrO2)2·CO2·xH2O; MW: 290.45 (anhydrous) Density (g/mL): 2.2
MSDS SDS
Catalog Number: (10100-488)

Supplier:  Prosci
Description:   COX18 is required for the insertion of integral membrane proteins into the mitochondrial inner membrane. COX18 is essential for the activity and assembly of cytochrome c oxidase. COX18 plays a central role in the translocation and export of the C-terminal part of the COX2 protein into the mitochondrial intermembrane space.COX18 encodes a cytochrome c oxidase (COX)-assembly protein. The S. cerevisiae Cox18 protein catalyzes the insertion of the Cox2 (MTCO2; MIM 516040) C-terminal tail into the mitochondrial inner membrane, an intermediate step in the assembly of complex IV of the mitochondrial respiratory chain (Sacconi et al., 2005 [PubMed 16212937]).
Supplier:  THERMO FISHER SCIENTIFIC CHEMICALS
Description:   Lanthanum(III) isopropoxide 98%
Catalog Number: (76011-388)

Supplier:  Prosci
Description:   The protein encoded by this gene is the 80-kilodalton subunit of the Ku heterodimer protein which is also known as ATP-dependant DNA helicase II or DNA repair protein XRCC5. Ku is the DNA-binding component of the DNA-dependent protein kinase, and it functions together with the DNA ligase IV-XRCC4 complex in the repair of DNA double-strand break by non-homologous end joining and the completion of V(D)J recombination events. This gene functionally complements Chinese hamster xrs-6, a mutant defective in DNA double-strand break repair and in ability to undergo V(D)J recombination. A rare microsatellite polymorphism in this gene is associated with cancer in patients of varying radiosensitivity.

Supplier:  Bioss
Description:   In eukaryotic cells, the Golgi apparatus receives newly synthesized proteins from the endoplasmic reticulum (ER) and, after covalent modification, delivers them to their destination in the cell. For membrane-directed proteins this process is believed to be carried out via vesicular transport. Correct vesicular transport is determined by specific pairing of vesicle-associated SNAREs (v-SNAREs) with those on the target membrane (t-SNAREs). Unconventional SNARE in the ER 1, also known as USE1 or protein p31, is a 259 amino acid t-SNARE that forms a larger complex with ZW10, RINT-1 and Syntaxin 18. Upon Mg2+-AP treatment in the presence of NSF and ?SNAP, ZW10, RINT-1 and USE1 dissociate from Syntaxin 18. USE1 is a single-pass type IV membrane protein that is localized to the endoplasmic reticulum membrane. Three named isoforms exist for USE1 as a result of alternative splicing events.

Supplier:  Bioss
Description:   In eukaryotic cells, the Golgi apparatus receives newly synthesized proteins from the endoplasmic reticulum (ER) and, after covalent modification, delivers them to their destination in the cell. For membrane-directed proteins this process is believed to be carried out via vesicular transport. Correct vesicular transport is determined by specific pairing of vesicle-associated SNAREs (v-SNAREs) with those on the target membrane (t-SNAREs). Unconventional SNARE in the ER 1, also known as USE1 or protein p31, is a 259 amino acid t-SNARE that forms a larger complex with ZW10, RINT-1 and Syntaxin 18. Upon Mg2+-AP treatment in the presence of NSF and ?SNAP, ZW10, RINT-1 and USE1 dissociate from Syntaxin 18. USE1 is a single-pass type IV membrane protein that is localized to the endoplasmic reticulum membrane. Three named isoforms exist for USE1 as a result of alternative splicing events.
Supplier:  Strem Chemicals Inc
Description:   Alkoxide
Supplier:  THERMO FISHER SCIENTIFIC CHEMICALS
Description:   Aluminium isopropoxide 99.99% (trace metals basis)
Catalog Number: (10107-956)

Supplier:  Prosci
Description:   PCBP1 appears to be multifunctional. It along with PCBP-2 and hnRNPK corresponds to the major cellular poly (rC)-binding protein. It contains three K-homologous (KH) domains which may be involved in RNA binding. This protein together with PCBP-2 also functions as translational coactivators of poliovirus RNA via a sequence-specific interaction with stem-loop IV of the IRES and promote poliovirus RNA replication by binding to its 5'-terminal cloverleaf structure. It has also been implicated in translational control of the 15-lipoxygenase mRNA, human Papillomavirus type 16 L2 mRNA, and hepatitis A virus RNA. PCBP1 is also suggested to play a part in formation of a sequence-specific alpha-globin mRNP complex which is associated with alpha-globin mRNA stability.This intronless gene is thought to be generated by retrotransposition of a fully processed PCBP-2 mRNA. This gene and PCBP-2 has paralogues PCBP3 and PCBP4 which is thought to arose as a result of duplication events of entire genes. The protein encoded by this gene appears to be multifunctional. It along with PCBP-2 and hnRNPK corresponds to the major cellular poly (rC)-binding proteins. It contains three K-homologous (KH) domains which may be involved in RNA binding. This encoded protein together with PCBP-2 also functions as translational coactivators of poliovirus RNA via a sequence-specific interaction with stem-loop IV of the IRES and promote poliovirus RNA replication by binding to its 5'-terminal cloverleaf structure. It has also been implicated in translational control of the 15-lipoxygenase mRNA, human Papillomavirus type 16 L2 mRNA, and hepatitis A virus RNA. The encoded protein is also suggested to play a part in formation of a sequence-specific alpha-globin mRNP complex which is associated with alpha-globin mRNA stability.
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Stock for this item is limited, but may be available in a warehouse close to you. Please make sure that you are logged in to the site so that available stock can be displayed. If the call is still displayed and you need assistance, please call us at 1-800-932-5000.
This product is marked as restricted and can only be purchased by approved Shipping Accounts. If you need further assistance, email VWR Regulatory Department at Regulatory_Affairs@vwr.com
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