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 SLC20A2 | [1] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Asparagine |
Modified Location |
81 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
N-linked Glycosylation at SLC20A2 Asparagine 81 has the potential to affect its expression or activity. | ||||
Phosphorylation |
|||||
Serine | 24 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC20A2 | [2] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
106 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 106 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
. | [3] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
197 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 197 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC20A2 | [4], [5] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
253 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 253 has the potential to affect its expression or activity. | ||||
PTM Phenomenon4 |
Have the potential to influence SLC20A2 | [6], [7] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
256 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 256 has the potential to affect its expression or activity. | ||||
PTM Phenomenon5 |
Have the potential to influence SLC20A2 | [6], [7] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
259 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 259 has the potential to affect its expression or activity. | ||||
PTM Phenomenon6 |
Have the potential to influence SLC20A2 | [7], [8] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
261 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 261 has the potential to affect its expression or activity. | ||||
PTM Phenomenon7 |
Have the potential to influence SLC20A2 | [6], [9] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
268 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 268 has the potential to affect its expression or activity. | ||||
PTM Phenomenon8 |
Have the potential to influence SLC20A2 | [10] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
283 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 283 has the potential to affect its expression or activity. | ||||
PTM Phenomenon9 |
Have the potential to influence SLC20A2 | [10] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
305 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 305 has the potential to affect its expression or activity. | ||||
PTM Phenomenon10 |
Have the potential to influence SLC20A2 | [6], [11] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
316 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 316 has the potential to affect its expression or activity. | ||||
PTM Phenomenon11 |
Have the potential to influence SLC20A2 | [6], [12] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
321 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 321 has the potential to affect its expression or activity. | ||||
PTM Phenomenon12 |
Have the potential to influence SLC20A2 | [6], [13] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
324 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 324 has the potential to affect its expression or activity. | ||||
PTM Phenomenon13 |
Have the potential to influence SLC20A2 | [6], [13] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
327 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 327 has the potential to affect its expression or activity. | ||||
PTM Phenomenon14 |
Have the potential to influence SLC20A2 | [10], [14] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
351 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 351 has the potential to affect its expression or activity. | ||||
PTM Phenomenon15 |
Have the potential to influence SLC20A2 | [13], [15] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
375 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 375 has the potential to affect its expression or activity. | ||||
PTM Phenomenon16 |
Have the potential to influence SLC20A2 | [6], [9] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
385 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 385 has the potential to affect its expression or activity. | ||||
PTM Phenomenon17 |
Have the potential to influence SLC20A2 | [13], [16] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
413 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 413 has the potential to affect its expression or activity. | ||||
PTM Phenomenon18 |
Have the potential to influence SLC20A2 | [8], [9] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
422 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 422 has the potential to affect its expression or activity. | ||||
PTM Phenomenon19 |
Have the potential to influence SLC20A2 | [8], [13] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
424 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 424 has the potential to affect its expression or activity. | ||||
PTM Phenomenon20 |
Have the potential to influence SLC20A2 | [17], [18] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
432 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 432 has the potential to affect its expression or activity. | ||||
PTM Phenomenon21 |
Have the potential to influence SLC20A2 | [17], [18] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
434 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 434 has the potential to affect its expression or activity. | ||||
PTM Phenomenon22 |
Have the potential to influence SLC20A2 | [17], [19] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
435 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 435 has the potential to affect its expression or activity. | ||||
PTM Phenomenon23 |
Have the potential to influence SLC20A2 | [8], [20] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
458 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 458 has the potential to affect its expression or activity. | ||||
PTM Phenomenon24 |
Have the potential to influence SLC20A2 | [2] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Serine |
Modified Location |
637 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Serine 637 has the potential to affect its expression or activity. | ||||
Threonine | 11 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC20A2 | [16] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
69 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 69 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
. | [3] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
190 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 190 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC20A2 | [21] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
243 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 243 has the potential to affect its expression or activity. | ||||
PTM Phenomenon4 |
Have the potential to influence SLC20A2 | [10] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
284 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 284 has the potential to affect its expression or activity. | ||||
PTM Phenomenon5 |
Have the potential to influence SLC20A2 | [6], [12] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
318 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 318 has the potential to affect its expression or activity. | ||||
PTM Phenomenon6 |
Have the potential to influence SLC20A2 | [13], [17] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
330 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 330 has the potential to affect its expression or activity. | ||||
PTM Phenomenon7 |
Have the potential to influence SLC20A2 | [13], [16] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
337 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 337 has the potential to affect its expression or activity. | ||||
PTM Phenomenon8 |
Have the potential to influence SLC20A2 | [22], [23] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
346 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 346 has the potential to affect its expression or activity. | ||||
PTM Phenomenon9 |
Have the potential to influence SLC20A2 | [9], [12] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
387 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 387 has the potential to affect its expression or activity. | ||||
PTM Phenomenon10 |
Have the potential to influence SLC20A2 | [12], [14] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
390 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 390 has the potential to affect its expression or activity. | ||||
PTM Phenomenon11 |
Have the potential to influence SLC20A2 | [8], [9] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Threonine |
Modified Location |
420 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Threonine 420 has the potential to affect its expression or activity. | ||||
Tyrosine | 11 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
. | [3] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
187 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 187 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
Have the potential to influence SLC20A2 | [22], [23] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
344 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 344 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC20A2 | [13], [23] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
354 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 354 has the potential to affect its expression or activity. | ||||
PTM Phenomenon4 |
Have the potential to influence SLC20A2 | [13], [24] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
377 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 377 has the potential to affect its expression or activity. | ||||
PTM Phenomenon5 |
Have the potential to influence SLC20A2 | [9], [12] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
386 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 386 has the potential to affect its expression or activity. | ||||
PTM Phenomenon6 |
Have the potential to influence SLC20A2 | [9], [12] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
389 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 389 has the potential to affect its expression or activity. | ||||
PTM Phenomenon7 |
Have the potential to influence SLC20A2 | [8], [25] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
423 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 423 has the potential to affect its expression or activity. | ||||
PTM Phenomenon8 |
Have the potential to influence SLC20A2 | [17], [19] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
430 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 430 has the potential to affect its expression or activity. | ||||
PTM Phenomenon9 |
Have the potential to influence SLC20A2 | [17], [19] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
433 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 433 has the potential to affect its expression or activity. | ||||
PTM Phenomenon10 |
Have the potential to influence SLC20A2 | [17], [19] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
436 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 436 has the potential to affect its expression or activity. | ||||
PTM Phenomenon11 |
Have the potential to influence SLC20A2 | [2] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Tyrosine |
Modified Location |
646 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Phosphorylation at SLC20A2 Tyrosine 646 has the potential to affect its expression or activity. | ||||
Ubiquitination |
|||||
Lysine | 8 PTM Phenomena Related to This Residue | Click to Show/Hide the Full List | |||
PTM Phenomenon1 |
Have the potential to influence SLC20A2 | [26] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
262 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 262 has the potential to affect its expression or activity. | ||||
PTM Phenomenon2 |
Have the potential to influence SLC20A2 | [27] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
272 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 272 has the potential to affect its expression or activity. | ||||
PTM Phenomenon3 |
Have the potential to influence SLC20A2 | [26], [27] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
278 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 278 has the potential to affect its expression or activity. | ||||
PTM Phenomenon4 |
. | [28] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
349 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 349 has the potential to affect its expression or activity. | ||||
PTM Phenomenon5 |
Have the potential to influence SLC20A2 | [26], [27] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
360 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 360 has the potential to affect its expression or activity. | ||||
PTM Phenomenon6 |
Have the potential to influence SLC20A2 | [26] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
370 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 370 has the potential to affect its expression or activity. | ||||
PTM Phenomenon7 |
Have the potential to influence SLC20A2 | [26] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
415 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 415 has the potential to affect its expression or activity. | ||||
PTM Phenomenon8 |
Have the potential to influence SLC20A2 | [29] | |||
Role of PTM |
Potential impacts | ||||
Modified Residue |
Lysine |
Modified Location |
425 | ||
Experimental Method |
Co-Immunoprecipitation | ||||
Detailed Description |
Ubiquitination at SLC20A2 Lysine 425 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.