General Information of Drug Transporter (DT)
DT ID DTD0270 Transporter Info
Gene Name SLC30A10
Transporter Name Zinc transporter 10
Gene ID
55532
UniProt ID
Q6XR72
Microbiota Influence of This DT (MBI)

Bacteria: Bacillota

   Genus: Streptococcus

     Streptococcus equi 

Microbe Info

Click to Show/Hide the Full List 2 Microbe Influence Related to This Species      

       Microbe Influence 1

Sequestration of human SLC30A10 substrates/drugs in upper and lower airway disease condition [1] , [2] , [3]

Regulating Factor

mtsB

Studied Phenotype

Upper and lower airway disease [ICD11: CA22]

Studied Tissue

Lung

In Vivo Model

Swiss Webster mice

Detailed Description

The protein mtsB of Streptococcus equi subsp. equi NCTC 9682 has been reported to sequester the substrate/drug of SLC30A10, which may affects its substrate/drug distribution in the body.

       Microbe Influence 2

Sequestration of human SLC30A10 substrates/drugs in the health condition [1] , [2] , [3]

Regulating Factor

mtsB

Detailed Description

The protein mtsB of Streptococcus equi subsp. zooepidemicus NCTC 7023T has been reported to sequester the substrate/drug of SLC30A10, which may affects its substrate/drug distribution in the body.

     Streptococcus pyogenes 

Microbe Info

Click to Show/Hide the Full List 1 Microbe Influence Related to This Species      

       Microbe Influence 1

Co-transport of human SLC30A10 substrates/drugs in the health condition [4] , [5] , [6] , [7]

Regulating Factor

czcD

Detailed Description

The protein czcD of Streptococcus pyogenes M1T1 5448 has been reported to transport similar substrates/drugs of SLC30A10, which affects the distribution of its substrate/drug in vivo.

     Streptococcus suis 

Microbe Info

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       Microbe Influence 1

Sequestration of human SLC30A10 substrates/drugs in sepsis condition [8] , [9] , [3]

Regulating Factor

troA

Studied Phenotype

Sepsis [ICD11: 1G40-1G41]

Studied Tissue

Liver

In Vivo Model

CD-1 mice

Detailed Description

The protein troA of Streptococcus suis serotype 9 has been reported to sequester the substrate/drug of SLC30A10, which may affects its substrate/drug distribution in the body.

Bacteria: Pseudomonadota

   Genus: Bradyrhizobium

     Bradyrhizobium diazoefficiens 

Microbe Info

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       Microbe Influence 1

Co-transport of human SLC30A10 substrates/drugs in the health condition [8] , [10] , [3]

Regulating Factor

mnoP

Detailed Description

The protein mnoP of Bradyrhizobium diazoefficiens USDA 110 has been reported to transport similar substrates/drugs of SLC30A10, which affects the distribution of its substrate/drug in vivo.

   Genus: Escherichia

     Escherichia coli 

Microbe Info

Click to Show/Hide the Full List 3 Microbe Influence Related to This Species      

       Microbe Influence 1

Co-transport of human SLC30A10 substrates/drugs in health condition [4] , [6] , [11] , [12]

Regulating Factor

yhiP

Studied Phenotype

Health [ICD11: N.A]

Studied Tissue

Kidney

In Vitro Model

Human kidney human embryonic kidney 293T cells (HEK 293T)

Detailed Description

The protein yhip of Escherichia coli has been reported to transport similar substrates/drugs of SLC30A10, which affects the distribution of its substrate/drug in vivo.

       Microbe Influence 2

Co-transport of human SLC30A10 substrates/drugs in the health condition [4] , [13] , [6]

Regulating Factor

zupT

Detailed Description

The protein zupT of Escherichia coli str. K-12 substr. W3110 has been reported to transport similar substrates/drugs of SLC30A10, which affects the distribution of its substrate/drug in vivo.

       Microbe Influence 3

Co-transport of human SLC30A10 substrates/drugs in the health condition [4] , [14] , [6]

Regulating Factor

zupT

Detailed Description

The protein zupT of Escherichia coli GR352 has been reported to transport similar substrates/drugs of SLC30A10, which affects the distribution of its substrate/drug in vivo.

   Genus: Salmonella

     Salmonella enterica 

Microbe Info

Click to Show/Hide the Full List 2 Microbe Influence Related to This Species      

       Microbe Influence 1

Co-transport of human SLC30A10 substrates/drugs in acute monocytic leukemia condition [4] , [5] , [6] , [15]

Regulating Factor

SPI-1

Studied Phenotype

Acute monocytic leukemia [ICD11: 2A60.34]

Studied Tissue

Blood

In Vitro Model

Human childhood acute monocytic leukemia cells (THP-1)

Detailed Description

The protein SPI-1 of Salmonella enterica subsp. enterica serovar Typhimurium str. SL1344 has been reported to transport similar substrates/drugs of SLC30A10, which affects the distribution of its substrate/drug in vivo.

       Microbe Influence 2

Co-transport of human SLC30A10 substrates/drugs in the health condition [4] , [6] , [16] , [17]

Regulating Factor

zupT

Detailed Description

The protein zupT of Salmonella enterica subsp. enterica serovar Typhimurium IR715 has been reported to transport similar substrates/drugs of SLC30A10, which affects the distribution of its substrate/drug in vivo.

   Genus: Yersinia

     Yersinia pseudotuberculosis 

Microbe Info

Click to Show/Hide the Full List 1 Microbe Influence Related to This Species      

       Microbe Influence 1

Sequestration of human SLC30A10 substrates/drugs in the health condition [18] , [3]

Regulating Factor

tssS

Detailed Description

The protein tssS of Yersinia pseudotuberculosis YPIII has been reported to sequester the substrate/drug of SLC30A10, which may affects its substrate/drug distribution in the body.

Bacteria: Spirochaetota

   Genus: Treponema

     Treponema pallidum 

Microbe Info

Click to Show/Hide the Full List 1 Microbe Influence Related to This Species      

       Microbe Influence 1

Sequestration of human SLC30A10 substrates/drugs in the health condition [19] , [3]

Regulating Factor

troA

Detailed Description

The protein troA of Treponema pallidum subsp. pallidum str. Nichols has been reported to sequester the substrate/drug of SLC30A10, which may affects its substrate/drug distribution in the body.
References
1 A new family of high-affinity ABC manganese and zinc permeases. Res Microbiol. 2001 Apr-May;152(3-4):231-43.
2 Identification of lipoprotein homologues of pneumococcal PsaA in the equine pathogens Streptococcus equi and Streptococcus zooepidemicus. Infect Immun. 2000 Oct;68(10):6048-51.
3 Iron and manganese transport in mammalian systems. Biochim Biophys Acta Mol Cell Res. 2021 Jan;1868(1):118890.
4 Transition metal ions at the crossroads of mucosal immunity and microbial pathogenesis. Front Cell Infect Microbiol. 2014 Jan 24;4:2.
5 Immunological orchestration of zinc homeostasis: The battle between host mechanisms and pathogen defenses. Arch Biochem Biophys. 2016 Dec 1;611:66-78.
6 Transition metals and host-microbe interactions in the inflamed intestine. Biometals. 2019 Jun;32(3):369-384.
7 An antimicrobial role for zinc in innate immune defense against group A streptococcus. J Infect Dis. 2014 May 15;209(10):1500-8.
8 Manganese homeostasis and utilization in pathogenic bacteria. Mol Microbiol. 2015 Jul;97(2):216-28.
9 TroA of Streptococcus suis is required for manganese acquisition and full virulence. J Bacteriol. 2011 Oct;193(19):5073-80.
10 Bacterial outer membrane channel for divalent metal ion acquisition. Proc Natl Acad Sci U S A. 2011 Sep 13;108(37):15390-5.
11 Histidine pairing at the metal transport site of mammalian ZnT transporters controls Zn2+ over Cd2+ selectivity. Proc Natl Acad Sci U S A. 2012 May 8;109(19):7202-7.
12 Selective metal binding to a membrane-embedded aspartate in the Escherichia coli metal transporter YiiP (FieF). J Biol Chem. 2005 Oct 7;280(40):33716-24.
13 The metal permease ZupT from Escherichia coli is a transporter with a broad substrate spectrum. J Bacteriol. 2005 Mar;187(5):1604-11.
14 ZupT is a Zn(II) uptake system in Escherichia coli. J Bacteriol. 2002 Feb;184(3):864-6.
15 Salmonella employs multiple mechanisms to subvert the TLR-inducible zinc-mediated antimicrobial response of human macrophages. FASEB J. 2016 May;30(5):1901-12.
16 Salmonella Mitigates Oxidative Stress and Thrives in the Inflamed Gut by Evading Calprotectin-Mediated Manganese Sequestration. Cell Host Microbe. 2016 Jun 8;19(6):814-25.
17 The phage shock protein PspA facilitates divalent metal transport and is required for virulence of Salmonella enterica sv. Typhimurium. Mol Microbiol. 2010 Nov;78(3):669-85.
18 T6SS translocates a micropeptide to suppress STING-mediated innate immunity by sequestering manganese. Proc Natl Acad Sci U S A. 2021 Oct 19;118(42):e2103526118.
19 The general transition metal (Tro) and Zn2+ (Znu) transporters in Treponema pallidum: analysis of metal specificities and expression profiles. Mol Microbiol. 2007 Jul;65(1):137-52.

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