Chloroquine resistance transporter structure

Discussion in 'Canadian Pharmacy Drugs Online' started by zlobnus, 25-Feb-2020.

  1. Norrven XenForo Moderator

    Chloroquine resistance transporter structure


    This score cannot be used as a measure of the accuracy of the annotation as we cannot define the 'correct annotation' for any given protein. This indicates the type of evidence that supports the existence of the protein. Note that the 'protein existence' evidence does not give information on the accuracy or correctness of the sequence(s) displayed. This subsection of the Names and taxonomy section indicates the name(s) of the gene(s) that code for the protein sequence(s) described in the entry.

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    A recent study of the P. falciparum chloroquine-resistance transporter points to mechanisms underlying resistance to chloroquine and piperaquine Hilary Hurd Electron micrograph of red blood cells infected with Plasmodium falciparum. Abstract. The development of chloroquine as an antimalarial drug and the subsequent evolution of drug-resistant Plasmodium strains had major impacts on global public health in the 20th century. In P. falciparum the cause of the most lethal human malaria, chloroquine resistance is linked to multiple mutations in PfCRT, a protein that likely functions as a transporter in the parasite’s. The malaria parasite's chloroquine resistance transporter CRT is an integral membrane protein localized to the parasite's acidic digestive vacuole. The function of CRT is not known and the protein was originally described as a transporter simply because it possesses 10 transmembrane domains.

    This is known as the 'taxonomic identifier' or 'taxid'. This subsection of the Names and taxonomy section contains the taxonomic hierarchical classification lineage of the source organism. Cyclic redundancy and other checksums Numerical recipes in C 2nd ed., pp896-902, Cambridge University Press (1993)) AF030694 Genomic DNA Translation: AAF26926.1AF233064 m RNA Translation: AAF60271.1AF233065 m RNA Translation: AAF60272.1AF233066 m RNA Translation: AAF60273.1AF233067 m RNA Translation: AAF60274.1AF233068 m RNA Translation: AAF60275.1AF495376 Genomic DNA Translation: AAO85506.1AF495377 Genomic DNA Translation: AAO85507.1AF495378 Genomic DNA Translation: AAO85508.1AY651315 m RNA Translation: AAU00067.1AF468006 m RNA Translation: AAL75580.1DQ156107 m RNA Translation: AAZ81606.1DQ156108 m RNA Translation: AAZ81607.1DQ156109 m RNA Translation: AAZ81608.1DQ533840 m RNA Translation: ABF82363.1AY254700 m RNA Translation: AAP79044.1AF030694 Genomic DNA Translation: AAF26926.1AF233064 m RNA Translation: AAF60271.1AF233065 m RNA Translation: AAF60272.1AF233066 m RNA Translation: AAF60273.1AF233067 m RNA Translation: AAF60274.1AF233068 m RNA Translation: AAF60275.1AF495376 Genomic DNA Translation: AAO85506.1AF495377 Genomic DNA Translation: AAO85507.1AF495378 Genomic DNA Translation: AAO85508.1AY651315 m RNA Translation: AAU00067.1AF468006 m RNA Translation: AAL75580.1DQ156107 m RNA Translation: AAZ81606.1DQ156108 m RNA Translation: AAZ81607.1DQ156109 m RNA Translation: AAZ81608.1DQ533840 m RNA Translation: ABF82363.1AY254700 m RNA Translation: AAP79044.1 This subsection of the 'Entry information' section provides a mnemonic identifier for a Uni Prot KB entry, but it is not a stable identifier. Four distinct tokens exist: 'Name', 'Synonyms', 'Ordered locus names' and 'ORF names'. This subsection of the Names and taxonomy section shows the unique identifier assigned by the NCBI to the source organism of the protein.

    Chloroquine resistance transporter structure

    Plasmodium falciparum chloroquine resistance transporter is a., Chloroquine-Resistant Malaria The Journal of Infectious.

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  3. The function of Plasmodium falciparum chloroquine resistance transporter PfCRT can be quantified using a Saccharomyces cerevisiae model system Baro, N. K. Pooput, C. and Roepe, P. D. 2011 Biochemistry 50, 6701–6710.

    • Function of Resistance Conferring Plasmodium falciparum Chloroquine..
    • Malaria Parasite's Chloroquine Resistance Transporter is a..
    • Structural Investigation of Plasmodium falciparum Chloroquine..

    Recently, an altered chloroquine-transporter protein CG2 of the parasite has been related to chloroquine resistance, but other mechanisms of resistance also appear to be involved. Research on the mechanism of chloroquine and how the parasite has acquired chloroquine resistance is still ongoing, as other mechanisms of resistance are likely. And that’s what is so exciting about the image above. It presents the unprecedented, 3D atomic-resolution structure of a protein made by P. falciparum that’s been a major source of its resistance the chloroquine-resistance transporter protein, or PfCRT. In this cropped density map, you see part of the protein’s biochemical structure. Intensive research on CQ drug resistance has identified the association of P. falciparum chloroquine resistance transporter protein PfCRT, which belongs to the drug/metabolite transporter and EamA-like superfamily. Additionally, it has shown that K76 T mutation in PfCRT protein has mainly attributed to CQ resistance than other mutations.

     
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  5. techmaster Well-Known Member

    Chloroquine has long been used in the treatment or prevention of malaria from Plasmodium vivax, P. malariae, excluding the malaria parasite Plasmodium falciparum, for it started to develop widespread resistance to it. Chloroquine treatment of ARPE-19 cells. - PubMed Central PMC Chloroquine Retinopathy - an overview ScienceDirect Topics Retinal toxicity of chloroquine hydrochloride administered by.
     
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