General Information of the Molecule (ID: Mol00882)
Name
Copper-translocating P-type ATPase (COPA) ,Mycolicibacterium smegmatis
Synonyms
D806_060860
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Molecule Type
Protein
Gene Name
D806_060860
Sequence
MTTSTPVPAASIELQIGGMTCASCANRIERRLNKLDGVIASVNYATEKATVAVPDGYDPA
DLISAVEATGYTASLPATSAPAREDTSPAAHDDPELDALRHRLLGSTVLSIPVIAMAMIP
ALQFTYWQWASLTLAAPVVIWAAWPFHRAAWANLRHGSATMDTLISMGTLAAFLWSLYAL
FLGTAGTAGMTHPFALALTPSHGAANIYLEVAAGVTTFILAGRYFEKRSKRQAGAALRAL
LELGAKEVSVLRDGAETKIPVDRLAVGDEFVVRPGEKIATDGVVVSGTSAVDASMLTGES
IPVDVGVGDTVVGATVNAGGRLVVRASRVGSDTQLAQMAQLVENAQTGKAQVQRLADRIS
GVFVPIVIAVAVITLGAWLGAGYPAAAAFTAAVAVLVIACPCALGLATPTALLVGTGRGA
QMGILIKGPEVLESTRTVDTVVLDKTGTVTTGKMALVDVRTIPGTQRRDLLRLAGALEDA
SEHPIARAIATAARDEVGVLPTVEDFANAEGEGVHGVVDGHAVVVGRESLLTDWAQHLDT
DLAQAKQHAEAEGKTVVTVGWDGTARGILIIADTVKPTSAQAITELKELGLTPILLTGDN
DAVARRIATDVGIDTVIAEVMPEGKVQAITILQSQGKTVAMIGDGVNDAAALAQADLGLA
MGTGTDVAIEASDITLVRGDLRSAVDAIRLSRKTLSTIKTNLFWAFAYNVAAVPVAALGM
LNPMLAGAAMAFSSVFVVGNSLRLRGFTSTFTDRKDNGHE
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Uniprot ID
A0A2U9PZ75_MYCSE
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Kingdom: N.A.
Phylum: Actinobacteria
Class: Actinomycetia
Order: Corynebacteriales
Family: Mycobacteriaceae
Genus: Mycolicibacterium
Species: Mycolicibacterium smegmatis
Type(s) of Resistant Mechanism of This Molecule
  IDUE: Irregularity in Drug Uptake and Drug Efflux
Drug Resistance Data Categorized by Drug
Approved Drug(s)
1 drug(s) in total
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Copper
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Drug Resistance Data Categorized by Their Corresponding Mechanisms
       Irregularity in Drug Uptake and Drug Efflux (IDUE) Click to Show/Hide
Disease Class: HIV-infected patients with tuberculosis [1]
Resistant Disease HIV-infected patients with tuberculosis [ICD-11: 1C60.0]
Resistant Drug Copper
Molecule Alteration Expression
Up-regulation
Experimental Note Discovered Using In-vivo Testing Model
Cell Pathway Regulation Cell growth Inhibition hsa05200
In Vitro Model Mycobacterium smegmatis mc2155 246196
Mycobacterium smegmatis mc2155-Cu 246196
Experiment for
Molecule Alteration
qPCR
Experiment for
Drug Resistance
MIC assay
Mechanism Description Quantitative proteomics was carried out to find differentially expressed proteins between mc2155 and mc2155-Cu. Among 345 differentially expressed proteins, copper-translocating P-type ATPase was up-regulated, while all other ABC transporters were down-regulated in mc2155-Cu, suggesting copper-translocating P-type ATPase plays a crucial role in copper resistance. Results also indicated that the down-regulation of metabolic enzymes and decreases in cellular NAD, FAD, mycothiol, and glutamine levels in mc2155-Cu were responsible for its slowing growth rate as compared to mc2155.
References
Ref 1 Proteomic Analysis of Drug-Resistant Mycobacteria: Co-Evolution of Copper and INH Resistance. PLoS One. 2015 Jun 2;10(6):e0127788. doi: 10.1371/journal.pone.0127788. eCollection 2015.

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