General Information of Target

Target ID LDTP00307
Target Name Delta-like protein 1 (DLL1)
Gene Name DLL1
Gene ID 28514
Synonyms
Delta-like protein 1; Drosophila Delta homolog 1; Delta1; H-Delta-1
3D Structure
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2D Sequence (FASTA)
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3D Structure (PDB)
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Sequence
MGSRCALALAVLSALLCQVWSSGVFELKLQEFVNKKGLLGNRNCCRGGAGPPPCACRTFF
RVCLKHYQASVSPEPPCTYGSAVTPVLGVDSFSLPDGGGADSAFSNPIRFPFGFTWPGTF
SLIIEALHTDSPDDLATENPERLISRLATQRHLTVGEEWSQDLHSSGRTDLKYSYRFVCD
EHYYGEGCSVFCRPRDDAFGHFTCGERGEKVCNPGWKGPYCTEPICLPGCDEQHGFCDKP
GECKCRVGWQGRYCDECIRYPGCLHGTCQQPWQCNCQEGWGGLFCNQDLNYCTHHKPCKN
GATCTNTGQGSYTCSCRPGYTGATCELGIDECDPSPCKNGGSCTDLENSYSCTCPPGFYG
KICELSAMTCADGPCFNGGRCSDSPDGGYSCRCPVGYSGFNCEKKIDYCSSSPCSNGAKC
VDLGDAYLCRCQAGFSGRHCDDNVDDCASSPCANGGTCRDGVNDFSCTCPPGYTGRNCSA
PVSRCEHAPCHNGATCHERGHRYVCECARGYGGPNCQFLLPELPPGPAVVDLTEKLEGQG
GPFPWVAVCAGVILVLMLLLGCAAVVVCVRLRLQKHRPPADPCRGETETMNNLANCQREK
DISVSIIGATQIKNTNKKADFHGDHSADKNGFKARYPAVDYNLVQDLKGDDTAVRDAHSK
RDTKCQPQGSSGEEKGTPTTLRGGEASERKRPDSGCSTSKDTKYQSVYVISEEKDECVIA
TEV
Target Type
Literature-reported
Target Bioclass
Other
Subcellular location
Apical cell membrane
Function
Transmembrane ligand protein of NOTCH1, NOTCH2 and NOTCH3 receptors that binds the extracellular domain (ECD) of Notch receptor in a cis and trans fashion manner. Following transinteraction, ligand cells produce mechanical force that depends of a clathrin-mediated endocytosis, requiring ligand ubiquitination, EPN1 interaction, and actin polymerisation; these events promote Notch receptor extracellular domain (NECD) transendocytosis and triggers Notch signaling through induction of cleavage, hyperphosphorylation, and nuclear accumulation of the intracellular domain of Notch receptors (NICD). Is required for embryonic development and maintenance of adult stem cells in many different tissues and immune systeme; the DLL1-induced Notch signaling is mediated through an intercellular communication that regulates cell lineage, cell specification, cell patterning and morphogenesis through effects on differentiation and proliferation. Plays a role in brain development at different level, namely by regulating neuronal differentiation of neural precursor cells via cell-cell interaction, most likely through the lateral inhibitory system in an endogenous level dependent-manner. During neocortex development, Dll1-Notch signaling transmission is mediated by dynamic interactions between intermediate neurogenic progenitors and radial glia; the cell-cell interactions are mediated via dynamic and transient elongation processes, likely to reactivate/maintain Notch activity in neighboring progenitors, and coordinate progenitor cell division and differentiation across radial and zonal boundaries. During cerebellar development, regulates Bergmann glial monolayer formation and its morphological maturation through a Notch signaling pathway. At the retina and spinal cord level, regulates neurogenesis by preventing the premature differentiation of neural progenitors and also by maintaining progenitors in spinal cord through Notch signaling pathway. Also controls neurogenesis of the neural tube in a progenitor domain-specific fashion along the dorsoventral axis. Maintains quiescence of neural stem cells and plays a role as a fate determinant that segregates asymmetrically to one daughter cell during neural stem cells mitosis, resulting in neuronal differentiation in Dll1-inheriting cell. Plays a role in immune systeme development, namely the development of all T-cells and marginal zone (MZ) B-cells. Blocks the differentiation of progenitor cells into the B-cell lineage while promoting the emergence of a population of cells with the characteristics of a T-cell/NK-cell precursor. Also plays a role during muscle development. During early development, inhibits myoblasts differentiation from the medial dermomyotomal lip and later regulates progenitor cell differentiation. Directly modulates cell adhesion and basal lamina formation in satellite cells through Notch signaling. Maintains myogenic progenitors pool by suppressing differentiation through down-regulation of MYOD1 and is required for satellite cell homing and PAX7 expression. During craniofacial and trunk myogenesis suppresses differentiation of cranial mesoderm-derived and somite-derived muscle via MYOD1 regulation but in cranial mesoderm-derived progenitors, is neither required for satellite cell homing nor for PAX7 expression. Also plays a role during pancreatic cell development. During type B pancreatic cell development, may be involved in the initiation of proximodistal patterning in the early pancreatic epithelium. Stimulates multipotent pancreatic progenitor cells proliferation and pancreatic growth by maintaining HES1 expression and PTF1A protein levels. During fetal stages of development, is required to maintain arterial identity and the responsiveness of arterial endothelial cells for VEGFA through regulation of KDR activation and NRP1 expression. Controls sprouting angiogenesis and subsequent vertical branch formation through regulation on tip cell differentiation. Negatively regulates goblet cell differentiation in intestine and controls secretory fat commitment through lateral inhibition in small intestine. Plays a role during inner ear development; negatively regulates auditory hair cell differentiation. Plays a role during nephron development through Notch signaling pathway. Regulates growth, blood pressure and energy homeostasis.
TTD ID
T72274
Uniprot ID
O00548
DrugMap ID
TT9CFQD
Ensemble ID
ENST00000366756.4
HGNC ID
HGNC:2908

Target Site Mutations in Different Cell Lines

Cell line Mutation details Probe for labeling this protein in this cell
AN3CA Deletion: p.G282AfsTer8
SNV: p.E256K
.
HCT116 Deletion: p.G282AfsTer8 .
HUH28 SNV: p.A720T .
IGROV1 SNV: p.L681I .
IM95 SNV: p.A6T .
KMCH1 SNV: p.G561A .
MFE319 SNV: p.L38M; p.Y350H; p.P413S .
NCIH1155 SNV: p.P224L .
NCIH2122 SNV: p.A10P .
NCIH446 Substitution: p.G47L .
OVCAR8 SNV: p.G185R .
OVTOKO Deletion: p.N630MfsTer90 .
TYKNU SNV: p.R146H .

Probe(s) Labeling This Target

ABPP Probe
Click To Hide/Show 5 Probe Related to This Target
Probe name Structure Binding Site(Ratio) Interaction ID Ref
DBIA
 Probe Info 
C696(1.77)  LDD3345  [1]
NAIA_5
 Probe Info 
N.A.  LDD2224  [2]
Compound 11
 Probe Info 
N.A.  LDD2213  [3]
IPM
 Probe Info 
N.A.  LDD2156  [4]
Phosphinate-6
 Probe Info 
N.A.  LDD0018  [5]

Competitor(s) Related to This Target

Competitor ID Name Cell line Binding Site(Ratio) Interaction ID Ref
 LDCM0214  AC1 HEK-293T C665(1.16)  LDD1507  [6]
 LDCM0215  AC10 HEK-293T C665(1.07); C56(1.06)  LDD1508  [6]
 LDCM0226  AC11 HEK-293T C665(1.14)  LDD1509  [6]
 LDCM0237  AC12 HEK-293T C583(1.21); C665(1.10); C56(1.10)  LDD1510  [6]
 LDCM0259  AC14 HEK-293T C665(0.76); C56(0.93)  LDD1512  [6]
 LDCM0270  AC15 HEK-293T C583(1.05); C665(1.21); C56(1.10)  LDD1513  [6]
 LDCM0276  AC17 HEK-293T C665(1.25)  LDD1515  [6]
 LDCM0277  AC18 HEK-293T C665(1.08); C56(1.10)  LDD1516  [6]
 LDCM0278  AC19 HEK-293T C665(1.10)  LDD1517  [6]
 LDCM0279  AC2 HEK-293T C665(1.11); C56(0.86)  LDD1518  [6]
 LDCM0280  AC20 HEK-293T C583(1.07); C665(1.00); C56(1.04)  LDD1519  [6]
 LDCM0281  AC21 HEK-293T C665(1.03); C56(1.07)  LDD1520  [6]
 LDCM0282  AC22 HEK-293T C665(0.72); C56(1.12)  LDD1521  [6]
 LDCM0283  AC23 HEK-293T C583(1.03); C665(0.93); C56(1.06)  LDD1522  [6]
 LDCM0284  AC24 HEK-293T C583(0.87); C665(0.86); C56(1.06)  LDD1523  [6]
 LDCM0285  AC25 HEK-293T C665(1.32)  LDD1524  [6]
 LDCM0286  AC26 HEK-293T C665(1.12); C56(1.05)  LDD1525  [6]
 LDCM0287  AC27 HEK-293T C665(1.06)  LDD1526  [6]
 LDCM0288  AC28 HEK-293T C583(1.06); C665(1.02); C56(1.11)  LDD1527  [6]
 LDCM0289  AC29 HEK-293T C665(1.11); C56(1.12)  LDD1528  [6]
 LDCM0290  AC3 HEK-293T C665(1.18)  LDD1529  [6]
 LDCM0291  AC30 HEK-293T C665(0.70); C56(0.96)  LDD1530  [6]
 LDCM0292  AC31 HEK-293T C583(1.00); C665(1.12); C56(1.14)  LDD1531  [6]
 LDCM0293  AC32 HEK-293T C583(0.82); C665(0.79); C56(1.13)  LDD1532  [6]
 LDCM0294  AC33 HEK-293T C665(1.05)  LDD1533  [6]
 LDCM0295  AC34 HEK-293T C665(1.08); C56(0.98)  LDD1534  [6]
 LDCM0296  AC35 HEK-293T C665(0.96)  LDD1535  [6]
 LDCM0297  AC36 HEK-293T C583(1.11); C665(1.10); C56(0.99)  LDD1536  [6]
 LDCM0298  AC37 HEK-293T C665(1.01); C56(1.14)  LDD1537  [6]
 LDCM0299  AC38 HEK-293T C665(0.74); C56(1.09)  LDD1538  [6]
 LDCM0300  AC39 HEK-293T C583(1.08); C665(1.21); C56(1.18)  LDD1539  [6]
 LDCM0301  AC4 HEK-293T C583(0.95); C665(1.05); C56(1.05)  LDD1540  [6]
 LDCM0302  AC40 HEK-293T C583(0.91); C665(0.52); C56(1.07)  LDD1541  [6]
 LDCM0303  AC41 HEK-293T C665(1.49)  LDD1542  [6]
 LDCM0304  AC42 HEK-293T C665(1.29); C56(0.91)  LDD1543  [6]
 LDCM0305  AC43 HEK-293T C665(0.95)  LDD1544  [6]
 LDCM0306  AC44 HEK-293T C583(1.10); C665(1.15); C56(1.01)  LDD1545  [6]
 LDCM0307  AC45 HEK-293T C665(1.13); C56(1.11)  LDD1546  [6]
 LDCM0308  AC46 HEK-293T C665(0.75); C56(1.05)  LDD1547  [6]
 LDCM0309  AC47 HEK-293T C583(1.07); C665(1.05); C56(1.10)  LDD1548  [6]
 LDCM0310  AC48 HEK-293T C583(0.98); C665(0.90); C56(1.05)  LDD1549  [6]
 LDCM0311  AC49 HEK-293T C665(1.21)  LDD1550  [6]
 LDCM0312  AC5 HEK-293T C665(0.97); C56(1.04)  LDD1551  [6]
 LDCM0313  AC50 HEK-293T C665(1.15); C56(1.09)  LDD1552  [6]
 LDCM0314  AC51 HEK-293T C665(0.98)  LDD1553  [6]
 LDCM0315  AC52 HEK-293T C583(1.12); C665(1.06); C56(1.05)  LDD1554  [6]
 LDCM0316  AC53 HEK-293T C665(1.08); C56(1.11)  LDD1555  [6]
 LDCM0317  AC54 HEK-293T C665(0.64); C56(1.28)  LDD1556  [6]
 LDCM0318  AC55 HEK-293T C583(1.12); C665(1.21); C56(1.19)  LDD1557  [6]
 LDCM0319  AC56 HEK-293T C583(0.97); C665(0.93); C56(1.10)  LDD1558  [6]
 LDCM0320  AC57 HEK-293T C665(1.20)  LDD1559  [6]
 LDCM0321  AC58 HEK-293T C665(1.10); C56(1.06)  LDD1560  [6]
 LDCM0322  AC59 HEK-293T C665(0.95)  LDD1561  [6]
 LDCM0323  AC6 HEK-293T C665(0.94); C56(0.59)  LDD1562  [6]
 LDCM0324  AC60 HEK-293T C583(1.04); C665(1.05); C56(1.00)  LDD1563  [6]
 LDCM0325  AC61 HEK-293T C665(1.09); C56(0.96)  LDD1564  [6]
 LDCM0326  AC62 HEK-293T C665(0.75); C56(1.06)  LDD1565  [6]
 LDCM0327  AC63 HEK-293T C583(1.08); C665(1.07); C56(1.03)  LDD1566  [6]
 LDCM0328  AC64 HEK-293T C583(0.90); C665(0.94); C56(0.94)  LDD1567  [6]
 LDCM0334  AC7 HEK-293T C583(1.05); C665(1.09); C56(1.22)  LDD1568  [6]
 LDCM0345  AC8 HEK-293T C583(0.88); C665(0.75); C56(0.81)  LDD1569  [6]
 LDCM0248  AKOS034007472 HEK-293T C665(1.04); C56(1.03)  LDD1511  [6]
 LDCM0356  AKOS034007680 HEK-293T C665(1.18)  LDD1570  [6]
 LDCM0275  AKOS034007705 HEK-293T C583(0.94); C665(0.65); C56(0.96)  LDD1514  [6]
 LDCM0367  CL1 HEK-293T C696(1.01); C583(0.91); C665(1.16); C56(0.96)  LDD1571  [6]
 LDCM0368  CL10 HEK-293T C665(0.52); C56(0.75)  LDD1572  [6]
 LDCM0369  CL100 HEK-293T C696(1.13); C596(1.52)  LDD1573  [6]
 LDCM0370  CL101 HEK-293T C696(1.05); C583(1.03); C665(1.27); C56(1.10)  LDD1574  [6]
 LDCM0371  CL102 HEK-293T C696(1.01); C665(1.16)  LDD1575  [6]
 LDCM0373  CL104 HEK-293T C696(1.08); C596(0.88)  LDD1577  [6]
 LDCM0374  CL105 HEK-293T C696(1.08); C583(0.92); C665(1.08); C56(0.96)  LDD1578  [6]
 LDCM0375  CL106 HEK-293T C696(0.96); C665(1.12)  LDD1579  [6]
 LDCM0377  CL108 HEK-293T C696(1.02); C596(0.91)  LDD1581  [6]
 LDCM0378  CL109 HEK-293T C696(0.98); C583(0.93); C665(1.06); C56(1.05)  LDD1582  [6]
 LDCM0379  CL11 HEK-293T C583(1.66); C665(1.05); C56(0.99)  LDD1583  [6]
 LDCM0380  CL110 HEK-293T C696(0.97); C665(0.96)  LDD1584  [6]
 LDCM0382  CL112 HEK-293T C696(1.08); C596(1.06)  LDD1586  [6]
 LDCM0383  CL113 HEK-293T C696(1.07); C583(0.86); C665(1.01); C56(1.12)  LDD1587  [6]
 LDCM0384  CL114 HEK-293T C696(1.10); C665(1.13)  LDD1588  [6]
 LDCM0386  CL116 HEK-293T C696(1.06); C596(0.76)  LDD1590  [6]
 LDCM0387  CL117 HEK-293T C696(1.04); C583(1.00); C665(1.01); C56(1.12)  LDD1591  [6]
 LDCM0388  CL118 HEK-293T C696(1.05); C665(0.96)  LDD1592  [6]
 LDCM0390  CL12 HEK-293T C583(1.24); C665(0.54); C56(0.99)  LDD1594  [6]
 LDCM0391  CL120 HEK-293T C696(1.11); C596(0.98)  LDD1595  [6]
 LDCM0392  CL121 HEK-293T C696(1.03); C583(0.99); C665(1.10); C56(1.11)  LDD1596  [6]
 LDCM0393  CL122 HEK-293T C696(0.98); C665(1.01)  LDD1597  [6]
 LDCM0395  CL124 HEK-293T C696(0.98); C596(0.76)  LDD1599  [6]
 LDCM0396  CL125 HEK-293T C696(1.07); C583(1.09); C665(0.88); C56(1.18)  LDD1600  [6]
 LDCM0397  CL126 HEK-293T C696(1.07); C665(0.99)  LDD1601  [6]
 LDCM0399  CL128 HEK-293T C696(1.08); C596(1.13)  LDD1603  [6]
 LDCM0400  CL13 HEK-293T C696(1.15); C583(1.03); C665(1.24); C56(1.07)  LDD1604  [6]
 LDCM0401  CL14 HEK-293T C696(0.97); C665(0.98)  LDD1605  [6]
 LDCM0403  CL16 HEK-293T C696(1.03); C596(1.33)  LDD1607  [6]
 LDCM0404  CL17 HEK-293T C665(1.13)  LDD1608  [6]
 LDCM0405  CL18 HEK-293T C665(1.04); C56(1.15)  LDD1609  [6]
 LDCM0406  CL19 HEK-293T C665(1.13)  LDD1610  [6]
 LDCM0407  CL2 HEK-293T C696(1.07); C665(0.96)  LDD1611  [6]
 LDCM0408  CL20 HEK-293T C583(1.65); C665(1.11); C56(1.10)  LDD1612  [6]
 LDCM0409  CL21 HEK-293T C665(0.98); C56(1.02)  LDD1613  [6]
 LDCM0410  CL22 HEK-293T C665(0.61); C56(1.07)  LDD1614  [6]
 LDCM0411  CL23 HEK-293T C583(1.83); C665(0.99); C56(1.05)  LDD1615  [6]
 LDCM0412  CL24 HEK-293T C583(1.37); C665(0.66); C56(0.96)  LDD1616  [6]
 LDCM0413  CL25 HEK-293T C696(1.01); C583(1.05); C665(0.85); C56(0.93)  LDD1617  [6]
 LDCM0414  CL26 HEK-293T C696(1.04); C665(1.00)  LDD1618  [6]
 LDCM0416  CL28 HEK-293T C696(1.03); C596(1.37)  LDD1620  [6]
 LDCM0417  CL29 HEK-293T C665(0.94)  LDD1621  [6]
 LDCM0419  CL30 HEK-293T C665(1.15); C56(1.01)  LDD1623  [6]
 LDCM0420  CL31 HEK-293T C665(1.22)  LDD1624  [6]
 LDCM0421  CL32 HEK-293T C583(1.43); C665(1.14); C56(1.04)  LDD1625  [6]
 LDCM0422  CL33 HEK-293T C665(0.91); C56(0.91)  LDD1626  [6]
 LDCM0423  CL34 HEK-293T C665(1.17); C56(0.96)  LDD1627  [6]
 LDCM0424  CL35 HEK-293T C583(1.79); C665(1.01); C56(1.01)  LDD1628  [6]
 LDCM0425  CL36 HEK-293T C583(1.52); C665(0.67); C56(0.92)  LDD1629  [6]
 LDCM0426  CL37 HEK-293T C696(1.06); C583(0.90); C665(0.94); C56(0.97)  LDD1630  [6]
 LDCM0429  CL4 HEK-293T C696(1.10); C596(1.20)  LDD1633  [6]
 LDCM0430  CL40 HEK-293T C696(1.10); C596(0.97)  LDD1634  [6]
 LDCM0431  CL41 HEK-293T C665(1.07)  LDD1635  [6]
 LDCM0432  CL42 HEK-293T C665(1.21); C56(1.09)  LDD1636  [6]
 LDCM0433  CL43 HEK-293T C665(0.85)  LDD1637  [6]
 LDCM0434  CL44 HEK-293T C583(1.38); C665(1.14); C56(1.00)  LDD1638  [6]
 LDCM0435  CL45 HEK-293T C665(1.07); C56(0.99)  LDD1639  [6]
 LDCM0436  CL46 HEK-293T C665(0.87); C56(0.90)  LDD1640  [6]
 LDCM0437  CL47 HEK-293T C583(1.52); C665(1.00); C56(0.96)  LDD1641  [6]
 LDCM0438  CL48 HEK-293T C583(1.42); C665(0.95); C56(0.94)  LDD1642  [6]
 LDCM0439  CL49 HEK-293T C696(1.06); C583(0.98); C665(0.83); C56(1.22)  LDD1643  [6]
 LDCM0440  CL5 HEK-293T C665(1.08)  LDD1644  [6]
 LDCM0441  CL50 HEK-293T C696(0.99); C665(1.08)  LDD1645  [6]
 LDCM0443  CL52 HEK-293T C696(1.08); C596(0.93)  LDD1646  [6]
 LDCM0444  CL53 HEK-293T C665(1.14)  LDD1647  [6]
 LDCM0445  CL54 HEK-293T C665(1.02); C56(0.94)  LDD1648  [6]
 LDCM0446  CL55 HEK-293T C665(1.07)  LDD1649  [6]
 LDCM0447  CL56 HEK-293T C583(1.55); C665(1.23); C56(1.01)  LDD1650  [6]
 LDCM0448  CL57 HEK-293T C665(1.11); C56(1.00)  LDD1651  [6]
 LDCM0449  CL58 HEK-293T C665(0.83); C56(1.00)  LDD1652  [6]
 LDCM0450  CL59 HEK-293T C583(1.74); C665(1.02); C56(1.13)  LDD1653  [6]
 LDCM0451  CL6 HEK-293T C665(1.25); C56(1.12)  LDD1654  [6]
 LDCM0452  CL60 HEK-293T C583(1.36); C665(0.73); C56(1.04)  LDD1655  [6]
 LDCM0453  CL61 HEK-293T C696(1.15); C583(1.01); C665(0.86); C56(1.32)  LDD1656  [6]
 LDCM0454  CL62 HEK-293T C696(0.96); C665(1.11)  LDD1657  [6]
 LDCM0456  CL64 HEK-293T C696(1.04); C596(1.01)  LDD1659  [6]
 LDCM0457  CL65 HEK-293T C665(1.23)  LDD1660  [6]
 LDCM0458  CL66 HEK-293T C665(1.30); C56(0.94)  LDD1661  [6]
 LDCM0459  CL67 HEK-293T C665(1.07)  LDD1662  [6]
 LDCM0460  CL68 HEK-293T C583(1.47); C665(1.03); C56(1.17)  LDD1663  [6]
 LDCM0461  CL69 HEK-293T C665(1.02); C56(1.06)  LDD1664  [6]
 LDCM0462  CL7 HEK-293T C665(1.02)  LDD1665  [6]
 LDCM0463  CL70 HEK-293T C665(0.85); C56(1.18)  LDD1666  [6]
 LDCM0464  CL71 HEK-293T C583(1.50); C665(1.07); C56(1.19)  LDD1667  [6]
 LDCM0465  CL72 HEK-293T C583(1.18); C665(0.70); C56(1.16)  LDD1668  [6]
 LDCM0466  CL73 HEK-293T C696(1.10); C583(0.98); C665(1.08); C56(1.11)  LDD1669  [6]
 LDCM0467  CL74 HEK-293T C696(1.06); C665(1.00)  LDD1670  [6]
 LDCM0469  CL76 HEK-293T C696(1.10); C596(0.98)  LDD1672  [6]
 LDCM0470  CL77 HEK-293T C665(1.07)  LDD1673  [6]
 LDCM0471  CL78 HEK-293T C665(1.16); C56(1.14)  LDD1674  [6]
 LDCM0472  CL79 HEK-293T C665(0.85)  LDD1675  [6]
 LDCM0473  CL8 HEK-293T C583(1.42); C665(0.87); C56(0.67)  LDD1676  [6]
 LDCM0474  CL80 HEK-293T C583(1.29); C665(1.06); C56(1.10)  LDD1677  [6]
 LDCM0475  CL81 HEK-293T C665(1.07); C56(1.18)  LDD1678  [6]
 LDCM0476  CL82 HEK-293T C665(0.68); C56(0.96)  LDD1679  [6]
 LDCM0477  CL83 HEK-293T C583(1.55); C665(0.88); C56(1.13)  LDD1680  [6]
 LDCM0478  CL84 HEK-293T C583(1.28); C665(0.66); C56(0.95)  LDD1681  [6]
 LDCM0479  CL85 HEK-293T C696(1.15); C583(1.04); C665(0.91); C56(1.14)  LDD1682  [6]
 LDCM0480  CL86 HEK-293T C696(1.13); C665(0.87)  LDD1683  [6]
 LDCM0482  CL88 HEK-293T C696(1.22); C596(1.23)  LDD1685  [6]
 LDCM0483  CL89 HEK-293T C665(1.11)  LDD1686  [6]
 LDCM0484  CL9 HEK-293T C665(0.92); C56(1.04)  LDD1687  [6]
 LDCM0485  CL90 HEK-293T C665(0.83); C56(0.76)  LDD1688  [6]
 LDCM0486  CL91 HEK-293T C665(0.89)  LDD1689  [6]
 LDCM0487  CL92 HEK-293T C583(1.18); C665(1.08); C56(0.87)  LDD1690  [6]
 LDCM0488  CL93 HEK-293T C665(1.04); C56(1.02)  LDD1691  [6]
 LDCM0489  CL94 HEK-293T C665(0.91); C56(0.98)  LDD1692  [6]
 LDCM0490  CL95 HEK-293T C583(1.43); C665(0.91); C56(0.80)  LDD1693  [6]
 LDCM0491  CL96 HEK-293T C583(1.21); C665(0.66); C56(0.88)  LDD1694  [6]
 LDCM0492  CL97 HEK-293T C696(1.05); C583(0.96); C665(1.21); C56(0.95)  LDD1695  [6]
 LDCM0493  CL98 HEK-293T C696(1.16); C665(1.03)  LDD1696  [6]
 LDCM0427  Fragment51 HEK-293T C696(1.04); C665(1.01)  LDD1631  [6]
 LDCM0022  KB02 HEK-293T C665(0.79)  LDD1492  [6]
 LDCM0023  KB03 HEK-293T C665(1.07)  LDD1497  [6]
 LDCM0024  KB05 NCI-H1650 C696(1.77)  LDD3345  [1]

References

1 DrugMap: A quantitative pan-cancer analysis of cysteine ligandability. Cell. 2024 May 9;187(10):2536-2556.e30. doi: 10.1016/j.cell.2024.03.027. Epub 2024 Apr 22.
Mass spectrometry data entry: PXD047840
2 N-Acryloylindole-alkyne (NAIA) enables imaging and profiling new ligandable cysteines and oxidized thiols by chemoproteomics. Nat Commun. 2023 Jun 15;14(1):3564. doi: 10.1038/s41467-023-39268-w.
Mass spectrometry data entry: PXD041264
3 Multiplexed CuAAC Suzuki-Miyaura Labeling for Tandem Activity-Based Chemoproteomic Profiling. Anal Chem. 2021 Feb 2;93(4):2610-2618. doi: 10.1021/acs.analchem.0c04726. Epub 2021 Jan 20.
Mass spectrometry data entry: PXD022279
4 Benchmarking Cleavable Biotin Tags for Peptide-Centric Chemoproteomics. J Proteome Res. 2022 May 6;21(5):1349-1358. doi: 10.1021/acs.jproteome.2c00174. Epub 2022 Apr 25.
Mass spectrometry data entry: PXD031019
5 DFT-Guided Discovery of Ethynyl-Triazolyl-Phosphinates as Modular Electrophiles for Chemoselective Cysteine Bioconjugation and Profiling. Angew Chem Int Ed Engl. 2022 Oct 10;61(41):e202205348. doi: 10.1002/anie.202205348. Epub 2022 Aug 22.
Mass spectrometry data entry: PXD033004
6 Accelerating multiplexed profiling of protein-ligand interactions: High-throughput plate-based reactive cysteine profiling with minimal input. Cell Chem Biol. 2024 Mar 21;31(3):565-576.e4. doi: 10.1016/j.chembiol.2023.11.015. Epub 2023 Dec 19.
Mass spectrometry data entry: PXD044402