Since the query’s are matching does that mean the house mouse( mus musculus) is a good model to test in the human FGFR3 gene(achondroplasia). The NCBI blastp and reciprocal analysis are below
Nucleotides
It is an organic molecule made up of three basic components- a nitrogenous base, phosphate,and pentose sugar. The nucleotides are important for metabolic reactions andthe formation of DNA (deoxyribonucleic acid) and RNA (ribonucleic acid).
Nucleic Acids
Nucleic acids are essential biomolecules present in prokaryotic and eukaryotic cells and viruses. They carry the genetic information for the synthesis of proteins and cellular replication. The nucleic acids are of two types: deoxyribonucleic acid (DNA) and ribonucleic acid (RNA). The structure of all proteins and ultimately every biomolecule and cellular component is a product of information encoded in the sequence of nucleic acids. Parts of a DNA molecule containing the information needed to synthesize a protein or an RNA are genes. Nucleic acids can store and transmit genetic information from one generation to the next, fundamental to any life form.
![fibroblast growth factor receptor 3 isoform 3 precursor [Homo sapiens]
Sequence ID: NP_001156685.1 Length: 808 Number of Matches: 1
Range 1: 1 to 808
Score
Expect Method
Gaps
1478 bits(3827) 0.00) Compositional matrix adjust. 745/808(92%) 765/808(94%) 6/808 (0%)
VAGATSEPPGPEQRVVRRAAEVPGPEPSQQEQVAFGSGDTVELS 58
G EQRVV RAAEVPGPEP QQEQ+ FGSGD VELS
Sbjct 1 MGAPACALALCVAVAIVAGASSESLGTEQRVVGRAAEVPGPEPGOQEQLVFGSGDAVELS
60
Query 59
Sbjct 61
Query 119
CHPPGGAPTGPTVWAKDGTGLVASHRILVGPQRLQVLNASHEDAGVYSCQHRL TRRVLCH 118
C PPGG P GPTVW KDGTGLV S R+LVGPQRLQVLNASHED+G YSC+ RLT+RVLCH
CPPPGGGPMGPTVWVKDGTGLVPSERVLVGPORLOVLNASHEDSGAYSCRQRL TQRVLCH
120
Query 1 MVVPACVLVFCVAV--
M PAC L CVAV VAGA+SE
Identities
Positives
FSVRVTDAPSSGDDEDGEDVAE ----DTGAPYWTRPERMDKKLLAVPAANTVRFRCPAAG 174
FSVRVTDAPSSGDDEDGED AE DTGAPYWTRPERMDKKLLAVPAANTVRFRCPAAG
180
Sbjct 121
Query 175
Sbjct 181
234
240
Query
294
235 YTLDVLERSPHRPILQAGLPANQTAILGSDVEFHCKVYSDAQPHIQWLKHVEVNGSKVGP
YTLDVLERSPHRPILQAGLPANQTA+LGSDVEFHCKVYSDAQPHIQWLKHVEVNGSKVGP
Sbjct 241 YTLDVLERSPHRPILQAGLPANQTAVLGSDVEFHCKVYSDAQPHIQWLKHVEVNGSKVGP
Query 295
300
DGTPYVTVLKSWISENVEADARLRLANVSERDGGEYLCRATNFIGVAEKAFWLRVHGPQA
354
Sbjct 301
DGTPYVTVLKSWISESVEADVRLRLANVSERDGGEYLCRATNFIGVAEKAFWLSVHGPRA
360
Query 355 AEEELMETDEAGSVYAGVLSYGVVFFLFILVVAAVILCRLRSPPKKGLGSPTVHKVSRFP 414
AEEEL+E DEAGSVYAG+LSYGV FFLFILVVAAV LCRLRSPPKKGLGSPTVHK+SRFP
Sbjct 361 AEEELVEADEAGSVYAGILSYGVGFFLFILVVAAVTLCRLRSPPKKGLGSPTVHKISRFP 420
474
LKRQVSLESNSSMNSNTPLVRIARLSSGEGPVLANVSELELPADPKWELSRTRLTLGKPL
Query 415
Sbjct 421
480
Query 475 GEGCFGQVVMAEAIGIDKDRTAKPVTVAVKMLKDDATDKDLSDLVSEMEMMKMIGKHKNI 534
GEGCFGQVVMAEAIGIDKDR AKPVTVAVKMLKDDATDKDLSDLVS EMEMMKMIGKHKNI
GEGCFGQVVMAEAIGIDKDRAAKPVTVAVKMLKDDATDKDLSDLVSEMEMMKMIGKHKNI 540
Sbjct 481
Query 535
Sbjct 541
Query 595
INLLGACTQGGPLYVLVEYAAKGNLREFLRARRPPGMDYSFDACRL PEEQLTCKDLVSCA 594
INLLGACTOGGPLYVLVEYAAKGNLREFLRARRPPG+DYSFD C+ PEEQLT KDLVSCA
INLLGACTQGGPLYVLVEYAAKGNLREFLRARRPPGLDYSFDTCKPPEEQLTFKDLVSCA 600
YQVARGMEYLASQKCIHRDLAARNVLV ONVMKIADFGLARDVHNLDYYKKT TNGRLPV 654
Sbjct 601
YQVARGMEYLASQKCIHRDLAARNVLVTEDNVMKIADFGLARDVHNLDYYKKTTNGRLPV
YQVARGMEYLASQKCIHRDLAARNVLVTEDNVMKIADFGLARDVHNLDYYKKTTNGRLPV 660
KWMAPEALFDRVYTHQSDVWSFGVLLWEIFTLGGSPYPGIPVEELFKL LKEGHRMDKPAS 714
720
Query 655
Sbjct 661
FSVRVTDAPSSGDDEDGEDEAEDTGVDTGAPYWTRPERMDKKLLAVPAANTVRFRCPAAG
NPTPSISWLKNGKEFRGEHRIGGIKLRHQQWSLVMESVVPSDRGNYTCVVENKFGSIRQT
NPTPSISWLKNG+EFRGEHRIGGIKLRHQQWSLVMESVVPSDRGNYTCVVENKFGSIRQT
NPTPSISWLKNGREFRGEHRIGGIKLRHQQWSLVMESVVPSDRGNYTCVVENKFGSIRQT
DGTPYVTVLKSWISE+VEAD RLRLANVSERDGGEYLCRATNFIGVAEKAFWL VHGP+A
LKROVSLESN+SM+SNTPLVRIARLSSGEGP LANVSELELPADPKWELSR RLTLGKPL
LKRQVSLESNASMSSNTPLVRIARLSSGEGPTLANVSE LELPADPKWELSRARLTLGKPL
Frame
SSSSSGDDSVF THDL LPPGPPSNGGPRT 802
SSSSSGDDSVF HDLLPP PPS+GG RT
SSSSSGDDSVFAHDL LPPAPPSSGGSRT
808
KWMAPEALFDRVYTHQSDVWSFGVLLWEIFTLGGSPYPGIPVEELFKLLKEGHRMDKPA+
KWMAPEALFDRVYTHOSDVWSFGVLLWEIFTLGGSPYPGIPVEELFKLLKEGHRMDKPAN
Query 715 CTHDLYMIMRECWHAVPSQRPTFKQLVEDLDRILTVTSTDEYLDLSVPFEQYSPGGQDTP 774
CTHDLYMIMRECWHA PSQRPTFKQLVEDLDR+LTVTSTDEYLDLS PFEQYSPGGQDTP
CTHDLYMIMRECWHAAPSORPTFKOLVEDLDRVLTVTSTDEYLDLSAPFEQYSPGGQDTP 780
Sbjct 721
Query 775
Sbjct 781](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4c5addd0-3107-4aed-8c6b-6b5b2f9fadb0%2F857e2098-9dc7-4816-b277-96f89d39a63d%2Fbxyulrc_processed.jpeg&w=3840&q=75)

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