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'''Butyrophilin-like protein 2''' is a [[protein]] that in humans is encoded by the ''BTNL2'' [[gene]].<ref name="pmid10803852">{{cite journal | vauthors = Stammers M, Rowen L, Rhodes D, Trowsdale J, Beck S | title = BTL-II: a polymorphic locus with homology to the butyrophilin gene family, located at the border of the major histocompatibility complex class II and class III regions in human and mouse | journal = Immunogenetics | volume = 51 | issue = 4–5 | pages = 373–82 |date=May 2000 | pmid = 10803852 | pmc =  | doi =10.1007/s002510050633  }}</ref><ref name="pmid15735647">{{cite journal | vauthors = Valentonyte R, Hampe J, Huse K, Rosenstiel P, Albrecht M, Stenzel A, Nagy M, Gaede KI, Franke A, Haesler R, Koch A, Lengauer T, Seegert D, Reiling N, Ehlers S, Schwinger E, Platzer M, Krawczak M, Muller-Quernheim J, Schurmann M, Schreiber S | title = Sarcoidosis is associated with a truncating splice site mutation in BTNL2 | journal = Nat Genet | volume = 37 | issue = 4 | pages = 357–64 |date=Mar 2005 | pmid = 15735647 | pmc =  | doi = 10.1038/ng1519 }}</ref><ref name="entrez">{{cite web | title = Entrez Gene: BTNL2 butyrophilin-like 2 (MHC class II associated)| url = https://www.ncbi.nlm.nih.gov/sites/entrez?Db=gene&Cmd=ShowDetailView&TermToSearch=56244| accessdate = }}</ref>
'''Butyrophilin-like protein 2''' is a [[protein]] that in humans is encoded by the ''BTNL2'' [[gene]].<ref name="pmid10803852">{{cite journal | vauthors = Stammers M, Rowen L, Rhodes D, Trowsdale J, Beck S | title = BTL-II: a polymorphic locus with homology to the butyrophilin gene family, located at the border of the major histocompatibility complex class II and class III regions in human and mouse | journal = Immunogenetics | volume = 51 | issue = 4–5 | pages = 373–82 |date=May 2000 | pmid = 10803852 | pmc =  | doi =10.1007/s002510050633  }}</ref><ref name="pmid15735647">{{cite journal | vauthors = Valentonyte R, Hampe J, Huse K, Rosenstiel P, Albrecht M, Stenzel A, Nagy M, Gaede KI, Franke A, Haesler R, Koch A, Lengauer T, Seegert D, Reiling N, Ehlers S, Schwinger E, Platzer M, Krawczak M, Muller-Quernheim J, Schurmann M, Schreiber S | title = Sarcoidosis is associated with a truncating splice site mutation in BTNL2 | journal = Nat Genet | volume = 37 | issue = 4 | pages = 357–64 |date=Mar 2005 | pmid = 15735647 | pmc =  | doi = 10.1038/ng1519 }}</ref><ref name="entrez">{{cite web | title = Entrez Gene: BTNL2 butyrophilin-like 2 (MHC class II associated)| url = https://www.ncbi.nlm.nih.gov/sites/entrez?Db=gene&Cmd=ShowDetailView&TermToSearch=56244| accessdate = }}</ref>


Because it is associated with the immune system and the [[major histocompatibility complex]], it has been implicated in many diseases (see further reading list below). A large scale study found it to be the protein under the most stringent selection in the human genome in 8 out of 12 geographic regions using the [[HKA test]].<ref>{{cite journal|last1=Pagani|first1=Luca|last2=Lawson|first2=Daniel John|last3=Jagoda|first3=Evelyn|last4=Mörseburg|first4=Alexander|last5=Eriksson|first5=Anders|last6=Mitt|first6=Mario|last7=Clemente|first7=Florian|last8=Hudjashov|first8=Georgi|last9=DeGiorgio|first9=Michael|last10=Saag|first10=Lauri|last11=Wall|first11=Jeffrey D.|last12=Cardona|first12=Alexia|last13=Mägi|first13=Reedik|last14=Sayres|first14=Melissa A. Wilson|last15=Kaewert|first15=Sarah|last16=Inchley|first16=Charlotte|last17=Scheib|first17=Christiana L.|last18=Järve|first18=Mari|last19=Karmin|first19=Monika|last20=Jacobs|first20=Guy S.|last21=Antao|first21=Tiago|last22=Iliescu|first22=Florin Mircea|last23=Kushniarevich|first23=Alena|last24=Ayub|first24=Qasim|last25=Tyler-Smith|first25=Chris|last26=Xue|first26=Yali|last27=Yunusbayev|first27=Bayazit|last28=Tambets|first28=Kristiina|last29=Mallick|first29=Chandana Basu|last30=Saag|first30=Lehti|last31=Pocheshkhova|first31=Elvira|last32=Andriadze|first32=George|last33=Muller|first33=Craig|last34=Westaway|first34=Michael C.|last35=Lambert|first35=David M.|last36=Zoraqi|first36=Grigor|last37=Turdikulova|first37=Shahlo|last38=Dalimova|first38=Dilbar|last39=Sabitov|first39=Zhaxylyk|last40=Sultana|first40=Gazi Nurun Nahar|last41=Lachance|first41=Joseph|last42=Tishkoff|first42=Sarah|last43=Momynaliev|first43=Kuvat|last44=Isakova|first44=Jainagul|last45=Damba|first45=Larisa D.|last46=Gubina|first46=Marina|last47=Nymadawa|first47=Pagbajabyn|last48=Evseeva|first48=Irina|last49=Atramentova|first49=Lubov|last50=Utevska|first50=Olga|last51=Ricaut|first51=François-Xavier|last52=Brucato|first52=Nicolas|last53=Sudoyo|first53=Herawati|last54=Letellier|first54=Thierry|last55=Cox|first55=Murray P.|last56=Barashkov|first56=Nikolay A.|last57=Škaro|first57=Vedrana|last58=Mulahasanovic´|first58=Lejla|last59=Primorac|first59=Dragan|last60=Sahakyan|first60=Hovhannes|last61=Mormina|first61=Maru|last62=Eichstaedt|first62=Christina A.|last63=Lichman|first63=Daria V.|last64=Abdullah|first64=Syafiq|last65=Chaubey|first65=Gyaneshwer|last66=Wee|first66=Joseph T. S.|last67=Mihailov|first67=Evelin|last68=Karunas|first68=Alexandra|last69=Litvinov|first69=Sergei|last70=Khusainova|first70=Rita|last71=Ekomasova|first71=Natalya|last72=Akhmetova|first72=Vita|last73=Khidiyatova|first73=Irina|last74=Marjanović|first74=Damir|last75=Yepiskoposyan|first75=Levon|last76=Behar|first76=Doron M.|last77=Balanovska|first77=Elena|last78=Metspalu|first78=Andres|last79=Derenko|first79=Miroslava|last80=Malyarchuk|first80=Boris|last81=Voevoda|first81=Mikhail|last82=Fedorova|first82=Sardana A.|last83=Osipova|first83=Ludmila P.|last84=Lahr|first84=Marta Mirazón|last85=Gerbault|first85=Pascale|last86=Leavesley|first86=Matthew|last87=Migliano|first87=Andrea Bamberg|last88=Petraglia|first88=Michael|last89=Balanovsky|first89=Oleg|last90=Khusnutdinova|first90=Elza K.|last91=Metspalu|first91=Ene|last92=Thomas|first92=Mark G.|last93=Manica|first93=Andrea|last94=Nielsen|first94=Rasmus|last95=Villems|first95=Richard|last96=Willerslev|first96=Eske|last97=Kivisild|first97=Toomas|last98=Metspalu|first98=Mait|title=Genomic analyses inform on migration events during the peopling of Eurasia|journal=Nature|date=21 September 2016|volume=538|issue=7624|pages=238–242|doi=10.1038/nature19792}}</ref>
Because it is associated with the [[immune system]] and the [[major histocompatibility complex]], it has been implicated in many diseases (see further reading list below). A large scale study found it to be the protein under the most stringent selection in the [[human genome]] in 8 out of 12 geographic regions using the [[HKA test]].<ref>{{cite journal|last1=Pagani|first1=Luca|last2=Lawson|first2=Daniel John|last3=Jagoda|first3=Evelyn|last4=Mörseburg|first4=Alexander|last5=Eriksson|first5=Anders|last6=Mitt|first6=Mario|last7=Clemente|first7=Florian|last8=Hudjashov|first8=Georgi|last9=DeGiorgio|first9=Michael|last10=Saag|first10=Lauri|last11=Wall|first11=Jeffrey D.|last12=Cardona|first12=Alexia|last13=Mägi|first13=Reedik|last14=Sayres|first14=Melissa A. Wilson|last15=Kaewert|first15=Sarah|last16=Inchley|first16=Charlotte|last17=Scheib|first17=Christiana L.|last18=Järve|first18=Mari|last19=Karmin|first19=Monika|last20=Jacobs|first20=Guy S.|last21=Antao|first21=Tiago|last22=Iliescu|first22=Florin Mircea|last23=Kushniarevich|first23=Alena|last24=Ayub|first24=Qasim|last25=Tyler-Smith|first25=Chris|last26=Xue|first26=Yali|last27=Yunusbayev|first27=Bayazit|last28=Tambets|first28=Kristiina|last29=Mallick|first29=Chandana Basu|last30=Saag|first30=Lehti|last31=Pocheshkhova|first31=Elvira|last32=Andriadze|first32=George|last33=Muller|first33=Craig|last34=Westaway|first34=Michael C.|last35=Lambert|first35=David M.|last36=Zoraqi|first36=Grigor|last37=Turdikulova|first37=Shahlo|last38=Dalimova|first38=Dilbar|last39=Sabitov|first39=Zhaxylyk|last40=Sultana|first40=Gazi Nurun Nahar|last41=Lachance|first41=Joseph|last42=Tishkoff|first42=Sarah|last43=Momynaliev|first43=Kuvat|last44=Isakova|first44=Jainagul|last45=Damba|first45=Larisa D.|last46=Gubina|first46=Marina|last47=Nymadawa|first47=Pagbajabyn|last48=Evseeva|first48=Irina|last49=Atramentova|first49=Lubov|last50=Utevska|first50=Olga|last51=Ricaut|first51=François-Xavier|last52=Brucato|first52=Nicolas|last53=Sudoyo|first53=Herawati|last54=Letellier|first54=Thierry|last55=Cox|first55=Murray P.|last56=Barashkov|first56=Nikolay A.|last57=Škaro|first57=Vedrana|last58=Mulahasanovic´|first58=Lejla|last59=Primorac|first59=Dragan|last60=Sahakyan|first60=Hovhannes|last61=Mormina|first61=Maru|last62=Eichstaedt|first62=Christina A.|last63=Lichman|first63=Daria V.|last64=Abdullah|first64=Syafiq|last65=Chaubey|first65=Gyaneshwer|last66=Wee|first66=Joseph T. S.|last67=Mihailov|first67=Evelin|last68=Karunas|first68=Alexandra|last69=Litvinov|first69=Sergei|last70=Khusainova|first70=Rita|last71=Ekomasova|first71=Natalya|last72=Akhmetova|first72=Vita|last73=Khidiyatova|first73=Irina|last74=Marjanović|first74=Damir|last75=Yepiskoposyan|first75=Levon|last76=Behar|first76=Doron M.|last77=Balanovska|first77=Elena|last78=Metspalu|first78=Andres|last79=Derenko|first79=Miroslava|last80=Malyarchuk|first80=Boris|last81=Voevoda|first81=Mikhail|last82=Fedorova|first82=Sardana A.|last83=Osipova|first83=Ludmila P.|last84=Lahr|first84=Marta Mirazón|last85=Gerbault|first85=Pascale|last86=Leavesley|first86=Matthew|last87=Migliano|first87=Andrea Bamberg|last88=Petraglia|first88=Michael|last89=Balanovsky|first89=Oleg|last90=Khusnutdinova|first90=Elza K.|last91=Metspalu|first91=Ene|last92=Thomas|first92=Mark G.|last93=Manica|first93=Andrea|last94=Nielsen|first94=Rasmus|last95=Villems|first95=Richard|last96=Willerslev|first96=Eske|last97=Kivisild|first97=Toomas|last98=Metspalu|first98=Mait|title=Genomic analyses inform on migration events during the peopling of Eurasia|journal=Nature|date=21 September 2016|volume=538|issue=7624|pages=238–242|doi=10.1038/nature19792|pmc=5164938}}</ref>


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Latest revision as of 10:41, 16 May 2018

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Identifiers
Aliases
External IDsGeneCards: [1]
Orthologs
SpeciesHumanMouse
Entrez
Ensembl
UniProt
RefSeq (mRNA)

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RefSeq (protein)

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Location (UCSC)n/an/a
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Butyrophilin-like protein 2 is a protein that in humans is encoded by the BTNL2 gene.[1][2][3]

Because it is associated with the immune system and the major histocompatibility complex, it has been implicated in many diseases (see further reading list below). A large scale study found it to be the protein under the most stringent selection in the human genome in 8 out of 12 geographic regions using the HKA test.[4]


References

  1. Stammers M, Rowen L, Rhodes D, Trowsdale J, Beck S (May 2000). "BTL-II: a polymorphic locus with homology to the butyrophilin gene family, located at the border of the major histocompatibility complex class II and class III regions in human and mouse". Immunogenetics. 51 (4–5): 373–82. doi:10.1007/s002510050633. PMID 10803852.
  2. Valentonyte R, Hampe J, Huse K, Rosenstiel P, Albrecht M, Stenzel A, Nagy M, Gaede KI, Franke A, Haesler R, Koch A, Lengauer T, Seegert D, Reiling N, Ehlers S, Schwinger E, Platzer M, Krawczak M, Muller-Quernheim J, Schurmann M, Schreiber S (Mar 2005). "Sarcoidosis is associated with a truncating splice site mutation in BTNL2". Nat Genet. 37 (4): 357–64. doi:10.1038/ng1519. PMID 15735647.
  3. "Entrez Gene: BTNL2 butyrophilin-like 2 (MHC class II associated)".
  4. Pagani, Luca; Lawson, Daniel John; Jagoda, Evelyn; Mörseburg, Alexander; Eriksson, Anders; Mitt, Mario; Clemente, Florian; Hudjashov, Georgi; DeGiorgio, Michael; Saag, Lauri; Wall, Jeffrey D.; Cardona, Alexia; Mägi, Reedik; Sayres, Melissa A. Wilson; Kaewert, Sarah; Inchley, Charlotte; Scheib, Christiana L.; Järve, Mari; Karmin, Monika; Jacobs, Guy S.; Antao, Tiago; Iliescu, Florin Mircea; Kushniarevich, Alena; Ayub, Qasim; Tyler-Smith, Chris; Xue, Yali; Yunusbayev, Bayazit; Tambets, Kristiina; Mallick, Chandana Basu; Saag, Lehti; Pocheshkhova, Elvira; Andriadze, George; Muller, Craig; Westaway, Michael C.; Lambert, David M.; Zoraqi, Grigor; Turdikulova, Shahlo; Dalimova, Dilbar; Sabitov, Zhaxylyk; Sultana, Gazi Nurun Nahar; Lachance, Joseph; Tishkoff, Sarah; Momynaliev, Kuvat; Isakova, Jainagul; Damba, Larisa D.; Gubina, Marina; Nymadawa, Pagbajabyn; Evseeva, Irina; Atramentova, Lubov; Utevska, Olga; Ricaut, François-Xavier; Brucato, Nicolas; Sudoyo, Herawati; Letellier, Thierry; Cox, Murray P.; Barashkov, Nikolay A.; Škaro, Vedrana; Mulahasanovic´, Lejla; Primorac, Dragan; Sahakyan, Hovhannes; Mormina, Maru; Eichstaedt, Christina A.; Lichman, Daria V.; Abdullah, Syafiq; Chaubey, Gyaneshwer; Wee, Joseph T. S.; Mihailov, Evelin; Karunas, Alexandra; Litvinov, Sergei; Khusainova, Rita; Ekomasova, Natalya; Akhmetova, Vita; Khidiyatova, Irina; Marjanović, Damir; Yepiskoposyan, Levon; Behar, Doron M.; Balanovska, Elena; Metspalu, Andres; Derenko, Miroslava; Malyarchuk, Boris; Voevoda, Mikhail; Fedorova, Sardana A.; Osipova, Ludmila P.; Lahr, Marta Mirazón; Gerbault, Pascale; Leavesley, Matthew; Migliano, Andrea Bamberg; Petraglia, Michael; Balanovsky, Oleg; Khusnutdinova, Elza K.; Metspalu, Ene; Thomas, Mark G.; Manica, Andrea; Nielsen, Rasmus; Villems, Richard; Willerslev, Eske; Kivisild, Toomas; Metspalu, Mait (21 September 2016). "Genomic analyses inform on migration events during the peopling of Eurasia". Nature. 538 (7624): 238–242. doi:10.1038/nature19792. PMC 5164938.

External links

Further reading