Detail Information of Post-Translational Modifications
N-glycosylation |
|||||
---|---|---|---|---|---|
Asparagine | 1 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC5A3 | [1] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Asparagine |
Modified Location |
232 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
N-linked Glycosylation at SLC5A3 Asparagine 232 has the potential to affect its expression or activity. | ||||
Oxidation |
|||||
Cystine | 1 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC5A3 | [2] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Cystine |
Modified Location |
609 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Oxidation at SLC5A3 Cystine 609 has the potential to affect its expression or activity. | ||||
Phosphorylation |
|||||
Serine | 18 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC5A3 | [3] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
34 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 34 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
Have the potential to influence SLC5A3 | [3] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
37 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 37 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC5A3 | [4] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
104 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 104 has the potential to affect its expression or activity. | ||||
PTM Phenomenon4 |
Have the potential to influence SLC5A3 | [4] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
114 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 114 has the potential to affect its expression or activity. | ||||
PTM Phenomenon5 |
Have the potential to influence SLC5A3 | [5] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
226 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 226 has the potential to affect its expression or activity. | ||||
PTM Phenomenon6 |
Have the potential to influence SLC5A3 | [5] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
238 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 238 has the potential to affect its expression or activity. | ||||
PTM Phenomenon7 |
Have the potential to influence SLC5A3 | [4] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
401 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 401 has the potential to affect its expression or activity. | ||||
PTM Phenomenon8 |
Have the potential to influence SLC5A3 | [4] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
403 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 403 has the potential to affect its expression or activity. | ||||
PTM Phenomenon9 |
Have the potential to influence SLC5A3 | [4] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
404 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 404 has the potential to affect its expression or activity. | ||||
PTM Phenomenon10 |
Have the potential to influence SLC5A3 | [6] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
571 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 571 has the potential to affect its expression or activity. | ||||
PTM Phenomenon11 |
Have the potential to influence SLC5A3 | [7], [8] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
591 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 591 has the potential to affect its expression or activity. | ||||
PTM Phenomenon12 |
Have the potential to influence SLC5A3 | [8], [9] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
594 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 594 has the potential to affect its expression or activity. | ||||
PTM Phenomenon13 |
Have the potential to influence SLC5A3 | [7], [10] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
618 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 618 has the potential to affect its expression or activity. | ||||
PTM Phenomenon14 |
Have the potential to influence SLC5A3 | [7], [10] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
622 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 622 has the potential to affect its expression or activity. | ||||
PTM Phenomenon15 |
Have the potential to influence SLC5A3 | [7], [9] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
632 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 632 has the potential to affect its expression or activity. | ||||
PTM Phenomenon16 |
Have the potential to influence SLC5A3 | [11] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
668 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 668 has the potential to affect its expression or activity. | ||||
PTM Phenomenon17 |
Have the potential to influence SLC5A3 | [11] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
670 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 670 has the potential to affect its expression or activity. | ||||
PTM Phenomenon18 |
Have the potential to influence SLC5A3 | [12], [13] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
673 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Serine 673 has the potential to affect its expression or activity. | ||||
Threonine | 6 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC5A3 | [3] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
35 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Threonine 35 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
Have the potential to influence SLC5A3 | [4] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
108 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Threonine 108 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC5A3 | [5] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
225 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Threonine 225 has the potential to affect its expression or activity. | ||||
PTM Phenomenon4 |
Have the potential to influence SLC5A3 | [5] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
236 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Threonine 236 has the potential to affect its expression or activity. | ||||
PTM Phenomenon5 |
Have the potential to influence SLC5A3 | [14], [15] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
608 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Threonine 608 has the potential to affect its expression or activity. | ||||
PTM Phenomenon6 |
Have the potential to influence SLC5A3 | [7], [10] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
626 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Threonine 626 has the potential to affect its expression or activity. | ||||
Tyrosine | 3 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC5A3 | [3] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
39 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Tyrosine 39 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
Have the potential to influence SLC5A3 | [4] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
107 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Tyrosine 107 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC5A3 | [7], [16] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
631 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC5A3 Tyrosine 631 has the potential to affect its expression or activity. | ||||
S-nitrosylation |
|||||
Cystine | 1 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC5A3 | [17] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Cystine |
Modified Location |
609 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
S-nitrosylation (-SNO) at SLC5A3 Cystine 609 has the potential to affect its expression or activity. | ||||
Ubiquitination |
|||||
Lysine | 3 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC5A3 | [18], [19] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
115 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC5A3 Lysine 115 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
Have the potential to influence SLC5A3 | [18], [19] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
596 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC5A3 Lysine 596 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC5A3 | [18], [19] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
642 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC5A3 Lysine 642 has the potential to affect its expression or activity. | ||||
If you find any error in data or bug in web service, please kindly report it to Dr. Li and Dr. Fu.