Triticum aestivum      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 34 genes.  Reviewed (0 or Unreviewed (34

No.StatusDrLLPS IDEnsemble Gene IDUniProt AccessionGene Name
1
LLPS-Tra-0002
TraesCS2B02G375100
A0A3B6B204
2
LLPS-Tra-0004
TraesCS2B02G312400
A0A3B6C759
3
LLPS-Tra-0109
TraesCS5D02G499000
A0A3B6MZU3
4
LLPS-Tra-0157
TraesCS4A02G150000
A0A3B6HRV5
5
LLPS-Tra-0171
TraesCS4D02G091300
A0A3B6JF76
6
LLPS-Tra-0281
TraesCS6B02G440500
A0A3B6PV81
7
LLPS-Tra-0385
TraesCS6D02G041300
A0A3B6QBD0
8
LLPS-Tra-0391
TraesCS4A02G177800
A0A3B6HTM9
9
LLPS-Tra-0398
TraesCS7A02G287800
A0A3B6RJB3
10
LLPS-Tra-0452
TraesCS5A02G364900
A0A3B6KNL5
11
LLPS-Tra-0530
TraesCS6B02G412000
A0A3B6PSA3
12
LLPS-Tra-0572
TraesCS3A02G189300
A0A1D5WW05
13
LLPS-Tra-0674
TraesCS5D02G183400
A0A3B6MQN3
14
LLPS-Tra-0832
TraesCS7D02G250300
A0A3B6TDV5
15
LLPS-Tra-1023
TraesCS2A02G278000
A0A3B6AYE9
16
LLPS-Tra-1166
TraesCS5B02G159400
A0A3B6LKB2
17
LLPS-Tra-1218
TraesCS3D02G424100
A0A3B6H3U6
18
LLPS-Tra-1226
TraesCS5D02G076800
A0A3B6MLG3
19
LLPS-Tra-1311
TraesCS3D02G309800
A0A3B6JI67
20
LLPS-Tra-1439
TraesCS5D02G094600
A0A3B6MM85
21
LLPS-Tra-1594
TraesCS2B02G091600
A0A3B6BZ20
22
LLPS-Tra-1791
TraesCS7A02G337900
A0A3B6RLA3
23
LLPS-Tra-1809
TraesCS3B02G401100
A0A3B6FSY4
24
LLPS-Tra-1886
TraesCS4B02G288200
A0A3B6IWW0
25
LLPS-Tra-1896
TraesCS6A02G022300
A0A3B6NJ65
26
LLPS-Tra-2331
TraesCS2D02G388100
A0A3B6DH49
27
LLPS-Tra-2333
TraesCS4B02G117300
A0A3B6IMB7
28
LLPS-Tra-2416
TraesCS4A02G317800
A0A3B6HXW9
29
LLPS-Tra-2652
TraesCS5D02G465100
A0A3B6N018
30
LLPS-Tra-2687
TraesCS2D02G366700
A0A3B6C9L7
31
LLPS-Tra-3062
TraesCS1D02G066100
A0A3B5ZP10
32
LLPS-Tra-0299
TraesCS2D02G169700
W5C520
CAMPLR22A2D_LOCUS1512
33
LLPS-Tra-1654
TraesCS3A02G175900
A0A077RW01
LSM4
34
LLPS-Tra-1142
TraesCS5B02G013200
Q41518
whGRP-1