Basic Information

Gene Symbol
-
Assembly
GCA_937001565.2
Location
CAKZJP020000026.1:318345-328326[-]

Transcription Factor Domain

TF Family
DM
Domain
DM domain
PFAM
PF00751
TF Group
Zinc-Coordinating Group
Description
The DM domain is named after dsx and mab-3 [2]. dsx contains a single amino-terminal DM domain, whereas mab-3 contains two amino-terminal domains. The DM domain has a pattern of conserved zinc chelating residues C2H2C4 [1]. The dsx DM domain has been shown to dimerise and bind palindromic DNA [3].
Hmmscan Out
# of c-Evalue i-Evalue score bias hmm coord from hmm coord to ali coord from ali coord to env coord from env coord to acc
1 19 0.032 3.5e+02 2.7 0.0 10 25 39 54 37 57 0.90
2 19 0.032 3.5e+02 2.7 0.0 10 25 67 82 65 85 0.90
3 19 0.032 3.5e+02 2.7 0.0 10 25 95 110 93 113 0.90
4 19 0.032 3.5e+02 2.7 0.0 10 25 123 138 121 141 0.90
5 19 0.032 3.5e+02 2.7 0.0 10 25 151 166 149 169 0.90
6 19 0.032 3.5e+02 2.7 0.0 10 25 179 194 177 197 0.90
7 19 0.032 3.5e+02 2.7 0.0 10 25 207 222 205 225 0.90
8 19 0.032 3.5e+02 2.7 0.0 10 25 235 250 233 253 0.90
9 19 0.032 3.5e+02 2.7 0.0 10 25 263 278 261 281 0.90
10 19 0.032 3.5e+02 2.7 0.0 10 25 291 306 289 309 0.90
11 19 0.032 3.5e+02 2.7 0.0 10 25 319 334 317 337 0.90
12 19 0.032 3.5e+02 2.7 0.0 10 25 347 362 345 365 0.90
13 19 0.032 3.5e+02 2.7 0.0 10 25 375 390 373 393 0.90
14 19 0.032 3.5e+02 2.7 0.0 10 25 403 418 401 421 0.90
15 19 0.032 3.5e+02 2.7 0.0 10 25 431 446 429 449 0.90
16 19 0.032 3.5e+02 2.7 0.0 10 25 459 474 457 477 0.90
17 19 0.032 3.5e+02 2.7 0.0 10 25 487 502 485 505 0.90
18 19 0.032 3.5e+02 2.7 0.0 10 25 515 530 513 533 0.90
19 19 0.032 3.5e+02 2.7 0.0 10 25 543 558 541 561 0.90

Sequence Information

Coding Sequence
ATGGGGTCGGAGGGCCAGCTGGGAACCGGCAGCACCAACGacgcgcgcgcgcccgcgcccgccatCATGGCGGCGCTGCAGGGGCGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGTACGTGGTCATGCTAAGCTCTGTACACTATATAGCGCGCCCGTCCGAGTGGCGGCCGGCGGGCAGCACACCGTGCTCCTTGTGGAGGACCCATCATCCCAAAAAGAACCATCCCCGCCTCCAGAAAGCGAGACTTCAGAACAAAAAGGAGACTCGCAGTCCAACGAGTCAGAAGAAGAAGAGGTCACGCCAGCCAAGAAGCAAAAAAGTGAACAGGAAGGGGAGATCTCTTCGACCTCTAGCGCTCAGCCGAGTGATGTTGGCGAGGAAGCTAAACCACAGAAGGTGAATGGTGATGAAAAGAAAGAGACTCCTATGGAAATTGATGAAACTGACAACCCAAAAGAACAGAAAGACGAGACAGAGACAAAATCAGCAGACGAGCACACAGACACTAATCAGACCGAATCTGAAAACATACAGCCAGAGGACTCCAAACCAGAGACAACAGACACCTCCAGCCAAGAAACCACAGACAGTGATACCAAGTCTCAGGAAACGGACAAGGCTGATGTAGAAATGAGTGAAGAACCCACAGAAGTGAATGGGACACCTGAAACTATTGAAACTAAGACCGTTGATGTTATACAGACAGCCAACCCAATAACAACTACAGCGTGA
Protein Sequence
MGSEGQLGTGSTNDARAPAPAIMAALQGRAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVVRGHAKLCTLYSAPVRVAAGGQHTVLLVEDPSSQKEPSPPPESETSEQKGDSQSNESEEEEVTPAKKQKSEQEGEISSTSSAQPSDVGEEAKPQKVNGDEKKETPMEIDETDNPKEQKDETETKSADEHTDTNQTESENIQPEDSKPETTDTSSQETTDSDTKSQETDKADVEMSEEPTEVNGTPETIETKTVDVIQTANPITTTA

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
-
90% Identity
-
80% Identity
-