Vitis vinifera      Scaffold


※ Scaffold introduction

    Scaffolds were defined as the drivers of LLPS essential for the structural integrity of MLOs, and the major components which, alone or with co-scaffolds, undergo LLPS (1-4). A minimum set of six experimental tests, including the assembly of spherical droplets, the observation of fusion events, and the identification of mutations that abolish or inhibit LLPS in vitro and in cells have been proposed for rigorous analysis of LLPS processes (1). For each known scaffold protein, descriptions on performed assays of the minimum set of experiments were presented on its gene page. For example, the human fused in sarcoma (FUS), a well-characterized RNA-binding protein undergoing LLPS involved in formation of multiple biomolecular condensates (5,6-8), forms liquid-like droplets both in cells and at near physiological conditions in vitro. All the six experimental tests were performed to analyze the LLPS properties of FUS (9).

References
1. Alberti, S., Gladfelter, A. and Mittag, T. (2019) Considerations and challenges in studying liquid-liquid phase separation and biomolecular condensates. Cell, 176, 419-434. PMID: 30682370
2. Banani, S.F., Lee, H.O., Hyman, A.A. and Rosen, M.K. (2017) Biomolecular condensates: organizers of cellular biochemistry. Nat. Rev. Mol. Cell Biol. 18, 285-298. PMID: 28225081
3. Banani, S.F., Rice, A.M., Peeples, W.B., Lin, Y., Jain, S., Parker, R. and Rosen, M.K. (2016) Compositional control of phase-separated cellular bodies. Cell, 166, 651-663. PMID: 27374333
4. Hyman, A.A. and Simons, K. (2012) Cell biology. Beyond oil and water--phase transitions in cells. Science, 337, 1047-1049. PMID: 22936764
5. Hofweber, M., Hutten, S., Bourgeois, B., Spreitzer, E., Niedner-Boblenz, A., Schifferer, M., Ruepp, M.D., Simons, M., Niessing, D., Madl, T. et al. (2018) Phase Separation of FUS Is Suppressed by Its Nuclear Import Receptor and Arginine Methylation. Cell, 173, 706-719 e713. PMID: 29677514
6. Murray, D.T., Kato, M., Lin, Y., Thurber, K.R., Hung, I., McKnight, S.L. and Tycko, R. (2017) Structure of FUS Protein Fibrils and Its Relevance to Self-Assembly and Phase Separation of Low-Complexity Domains. Cell, 171, 615-627 e61. PMID: 28942918
7. Guo, L., Kim, H.J., Wang, H., Monaghan, J., Freyermuth, F., Sung, J.C., O'Donovan, K., Fare, C.M., Diaz, Z., Singh, N. et al. (2018) Nuclear-Import Receptors Reverse Aberrant Phase Transitions of RNA-Binding Proteins with Prion-like Domains. Cell, 173, 677-692 e20. PMID: 29677512
8. Yoshizawa, T., Ali, R., Jiou, J., Fung, H.Y.J., Burke, K.A., Kim, S.J., Lin, Y., Peeples, W.B., Saltzberg, D., Soniat, M. et al. (2018) Nuclear Import Receptor Inhibits Phase Separation of FUS through Binding to Multiple Sites. Cell, 173, 693-705 e22. PMID: 29677513
9. Patel, A., Lee, H.O., Jawerth, L., Maharana, S., Jahnel, M., Hein, M.Y., Stoynov, S., Mahamid, J., Saha, S., Franzmann, T.M. et al. (2015) A Liquid-to-Solid Phase Transition of the ALS Protein FUS Accelerated by Disease Mutation. Cell, 57, 162, 1066-1077. PMID: 26317470


There are 36 genes.  Reviewed (0 or Unreviewed (36

No.StatusDrLLPS IDEnsemble Gene IDUniProt AccessionGene Name
1
LLPS-Viv-0290
VIT_07s0005g00230
D7U272
LSM4
2
LLPS-Viv-1623
VIT_00s0125g00270
F6H2R2
VIT_00s0125g00270
3
LLPS-Viv-1207
VIT_00s0216g00030
F6HCQ3
VIT_00s0216g00030
4
LLPS-Viv-1234
VIT_02s0025g03150
F6HUA4
VIT_02s0025g03150
5
LLPS-Viv-0022
VIT_03s0017g02160
D7TUG1
VIT_03s0017g02160
6
LLPS-Viv-1825
VIT_03s0063g00070
F6HQ88
VIT_03s0063g00070
7
LLPS-Viv-2003
VIT_03s0063g02610
F6HQM5
VIT_03s0063g02610
8
LLPS-Viv-1837
VIT_03s0088g00380
F6HBQ3
VIT_03s0088g00380
9
LLPS-Viv-0195
VIT_04s0008g02930
D7SU59
VIT_04s0008g02930
10
LLPS-Viv-1441
VIT_04s0044g00080
F6I0K0
VIT_04s0044g00080
11
LLPS-Viv-0143
VIT_05s0094g00870
F6HAX5
VIT_05s0094g00870
12
LLPS-Viv-1524
VIT_06s0004g00130
F6GUP4
VIT_06s0004g00130
13
LLPS-Viv-0257
VIT_06s0004g00850
F6GUJ5
VIT_06s0004g00850
14
LLPS-Viv-0822
VIT_07s0031g00600
D7SVX4
VIT_07s0031g00600
15
LLPS-Viv-0578
VIT_07s0255g00070
F6I7D4
VIT_07s0255g00070
16
LLPS-Viv-2093
VIT_08s0007g02870
D7TJB2
VIT_08s0007g02870
17
LLPS-Viv-0783
VIT_08s0007g07410
D7TI65
VIT_08s0007g07410
18
LLPS-Viv-2289
VIT_08s0040g02630
F6HQY1
VIT_08s0040g02630
19
LLPS-Viv-0158
VIT_09s0002g01560
D7TZU9
VIT_09s0002g01560
20
LLPS-Viv-2281
VIT_09s0018g01880
D7T448
VIT_09s0018g01880
21
LLPS-Viv-0866
VIT_11s0016g00700
F6HGN2
VIT_11s0016g00700
22
LLPS-Viv-1490
VIT_11s0052g00820
D7SQB3
VIT_11s0052g00820
23
LLPS-Viv-0811
VIT_12s0057g00880
F6HHN8
VIT_12s0057g00880
24
LLPS-Viv-1337
VIT_12s0142g00110
D7TR31
VIT_12s0142g00110
25
LLPS-Viv-0917
VIT_13s0019g04310
D7TM92
VIT_13s0019g04310
26
LLPS-Viv-0213
VIT_15s0021g02200
D7SLU6
VIT_15s0021g02200
27
LLPS-Viv-0716
VIT_15s0024g00620
D7UB91
VIT_15s0024g00620
28
LLPS-Viv-0335
VIT_15s0046g03200
A5C9D5
VIT_15s0046g03200
29
LLPS-Viv-0242
VIT_16s0039g02220
A5BVQ5
VIT_16s0039g02220
30
LLPS-Viv-1001
VIT_16s0050g00880
F6H6E9
VIT_16s0050g00880
31
LLPS-Viv-1010
VIT_16s0098g01630
E0CV68
VIT_16s0098g01630
32
LLPS-Viv-0853
VIT_17s0000g02860
F6GTT4
VIT_17s0000g02860
33
LLPS-Viv-1109
VIT_17s0000g07330
F6GSZ1
VIT_17s0000g07330
34
LLPS-Viv-0184
VIT_18s0001g00860
F6H0D9
VIT_18s0001g00860
35
LLPS-Viv-1172
VIT_18s0001g01800
F6HJC7
VIT_18s0001g01800
36
LLPS-Viv-1215
VIT_19s0014g02990
F6H262
VIT_19s0014g02990