General Information of Drug Transporter (DT)
DT ID DTD0232 Transporter Info
Gene Name SLC26A4
Transporter Name Sodium-independent chloride/iodide transporter
Gene ID
5172
UniProt ID
O43511
Post-Translational Modification of This DT
Overview ofSLC26A4 Modification Sites with Functional and Structural Information
Sequence
PTM type
X-Acetylation X-Phosphorylation X-Phosphorylation X-Ubiquitination X: Amino Acid

Acetylation

  Lysine

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

  PTM Phenomenon1

. [1]

Role of PTM

Potential impacts

Modified Residue

Lysine

Modified Location

681

Experimental Method

Co-Immunoprecipitation

Detailed Description

Acetylation at SLC26A4 Lysine 681 has the potential to affect its expression or activity.

Phosphorylation

  Serine

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

  PTM Phenomenon1

Have the potential to influence SLC26A4 [2]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

17

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 17 has the potential to affect its expression or activity.

  PTM Phenomenon2

. [1]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

137

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 137 has the potential to affect its expression or activity.

  PTM Phenomenon3

. [1]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

137

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 137 has the potential to affect its expression or activity.

  PTM Phenomenon4

. [1]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

145

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 145 has the potential to affect its expression or activity.

  PTM Phenomenon5

Have the potential to influence SLC26A4 [3]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

355

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 355 has the potential to affect its expression or activity.

  PTM Phenomenon6

. [1]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

448

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 448 has the potential to affect its expression or activity.

  PTM Phenomenon7

. [1]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

526

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 526 has the potential to affect its expression or activity.

  PTM Phenomenon8

. [1]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

526

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 526 has the potential to affect its expression or activity.

  PTM Phenomenon9

Have the potential to influence SLC26A4 [4]

Role of PTM

Potential impacts

Modified Residue

Serine

Modified Location

642

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Serine 642 has the potential to affect its expression or activity.

  Threonine

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

  PTM Phenomenon1

Have the potential to influence SLC26A4 [4]

Role of PTM

Potential impacts

Modified Residue

Threonine

Modified Location

631

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Threonine 631 has the potential to affect its expression or activity.

  PTM Phenomenon2

Have the potential to influence SLC26A4 [5]

Role of PTM

Potential impacts

Modified Residue

Threonine

Modified Location

717

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Threonine 717 has the potential to affect its expression or activity.

  Tyrosine

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

  PTM Phenomenon1

Have the potential to influence SLC26A4 [2]

Role of PTM

Potential impacts

Modified Residue

Tyrosine

Modified Location

16

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Tyrosine 16 has the potential to affect its expression or activity.

  PTM Phenomenon2

Have the potential to influence SLC26A4 [2]

Role of PTM

Potential impacts

Modified Residue

Tyrosine

Modified Location

20

Experimental Method

Co-Immunoprecipitation

Detailed Description

Phosphorylation at SLC26A4 Tyrosine 20 has the potential to affect its expression or activity.

Ubiquitination

  Lysine

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

  PTM Phenomenon1

. [1]

Role of PTM

Potential impacts

Modified Residue

Lysine

Modified Location

601

Experimental Method

Co-Immunoprecipitation

Detailed Description

Ubiquitination at SLC26A4 Lysine 601 has the potential to affect its expression or activity.
References
1 15 years of PhosphoSitePlus?: integrating post-translationally modified sites, disease variants and isoforms. Nucleic Acids Res. 2019;47(D1):D433-D441.
2 iTRAQ labeling is superior to mTRAQ for quantitative global proteomics and phosphoproteomics. Mol Cell Proteomics. 2012 Jun;11(6):M111.014423.
3 Robust, Reproducible, and Economical Phosphopeptide Enrichment Using Calcium Titanate. J Proteome Res. 2019 Mar 1;18(3):1411-1417.
4 An Augmented Multiple-Protease-Based Human Phosphopeptide Atlas. Cell Rep. 2015 Jun 23;11(11):1834-43.
5 TSH regulates pendrin membrane abundance and enhances iodide efflux in thyroid cells. Endocrinology. 2012 Jan;153(1):512-21.

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