General Information of Drug Transporter (DT)
DT ID DTD0414 Transporter Info
Gene Name SLC58A1
Transporter Name Magnesium transporter protein 1
Gene ID
84061
UniProt ID
Q9H0U3
Post-Translational Modification of This DT
Overview of SLC58A1 Modification Sites with Functional and Structural Information
Sequence
PTM type
X-N-glycosylation X-Phosphorylation X-Ubiquitination X: Amino Acid

N-glycosylation

  Asparagine

          1 PTM Phenomena Related to This Residue Click to Show/Hide the Full List

  PTM Phenomenon 1

Have the potential to influence SLC58A1 [1]

Role of PTM

Potential impacts

Modified Residue

Asparagine

Modified Location

71

Experimental Method

Co-Immunoprecipitation

Detailed Description

N-linked Glycosylation at SLC58A1 Asparagine 71 has the potential to affect its expression or activity.

Phosphorylation

  Serine

          2 PTM Phenomena Related to This Residue Click to Show/Hide the Full List

  PTM Phenomenon 1

Have the potential to influence SLC58A1 [2]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

108

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC58A1 Serine 108 has the potential to affect its expression or activity.

  PTM Phenomenon 2

Have the potential to influence SLC58A1 [3] , [4]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

162

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC58A1 Serine 162 has the potential to affect its expression or activity.

  Tyrosine

          1 PTM Phenomena Related to This Residue Click to Show/Hide the Full List

  PTM Phenomenon 1

Have the potential to influence SLC58A1 [2]

Role of PTM

Potential impacts

Modified Residue

Tyrosine

Modified Location

106

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC58A1 Tyrosine 106 has the potential to affect its expression or activity.

Ubiquitination

  Glutamicacid

          1 PTM Phenomena Related to This Residue Click to Show/Hide the Full List

  PTM Phenomenon 1

Have the potential to influence SLC58A1 [5] , [6]

Role of PTM

Potential impacts

Modified Residue

Glutamicacid

Modified Location

123

Experimental Method

Co-Immunoprecipitation

Detailed Description

Ubiquitination at SLC58A1 Glutamicacid 123 has the potential to affect its expression or activity.

  Lysine

          2 PTM Phenomena Related to This Residue Click to Show/Hide the Full List

  PTM Phenomenon 1

Have the potential to influence SLC58A1 [5] , [6]

Role of PTM

Potential impacts

Modified Residue

Lysine

Modified Location

50

Experimental Method

Co-Immunoprecipitation

Detailed Description

Ubiquitination at SLC58A1 Lysine 50 has the potential to affect its expression or activity.

  PTM Phenomenon 2

Have the potential to influence SLC58A1 [7]

Role of PTM

Potential impacts

Modified Residue

Lysine

Modified Location

91

Experimental Method

Co-Immunoprecipitation

Detailed Description

Ubiquitination at SLC58A1 Lysine 91 has the potential to affect its expression or activity.
References
1 dbPTM in 2022: an updated database for exploring regulatory networks and functional associations of protein post-translational modifications. Nucleic Acids Res. 2022 Jan 7;50(D1):D471-D479. (ID: MAGT1_HUMAN)
2 Global Phosphoproteomic Analysis of Human Skeletal Muscle Reveals a Network of Exercise-Regulated Kinases and AMPK Substrates. Cell Metab. 2015 Nov 3;22(5):922-35.
3 Systematic functional prioritization of protein posttranslational modifications. Cell. 2012 Jul 20;150(2):413-25.
4 The Plk1-dependent phosphoproteome of the early mitotic spindle. Mol Cell Proteomics. 2011 Jan;10(1):M110.004457.
5 A proteome-wide, quantitative survey of in vivo ubiquitylation sites reveals widespread regulatory roles. Mol Cell Proteomics. 2011 Oct;10(10):M111.013284.
6 Systematic and quantitative assessment of the ubiquitin-modified proteome. Mol Cell. 2011 Oct 21;44(2):325-40.
7 New findings on essential amino acids. Cesk Fysiol. 1990;39(1):13-25.

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