GLUT5

GLUT5
SLC2A5
식별자
에일리어스SLC2A5, GLUT-5, GLUT5, 용질담체 패밀리 2 멤버 5
외부 IDOMIM: 138230 MGI: 1928369 HomoloGene: 74459 GeneCard: SLC2A5
맞춤법
종.인간마우스
엔트레즈
앙상블
유니프로트
RefSeq(mRNA)

NM_001135585
NM_003039
NM_001328619
NM_001328620
NM_001328621

NM_019741

RefSeq(단백질)

NP_001129057
NP_001315548
NP_001315549
NP_001315550
NP_003030

NP_062715

장소(UCSC)Chr 1: 9.04 ~9.09 MbChr 4: 150.2 ~150.23 Mb
PubMed 검색[3][4]
위키데이터
인간 보기/편집마우스 표시/편집

GLUT5[5]소장에서 장세포의 꼭대기 경계에서 발현되는 과당 운반체이다.GLUT5는 과당이 장내강에서 고농도로 인해 촉진된 확산에 의해 장내강에서 장내구로 운반되는 것을 가능하게 한다.GLUT5는 골격근,[6] 고환, 신장, 지방조직(지방세포), [7]에서도 발현된다.

과당 흡수 불량 또는 식이 과당 불내증은 장구 내 과당 운반체의 양이 [8]부족한 소장의 식이 장애이다.

인간에서 GLUT5 단백질은 SLC2A5 [9]유전자에 의해 암호화된다.

규정

GLUT5에 의한 과당 섭취율은 당뇨병, 고혈압, 비만, 과당 흡수 불량 및 염증의해 유의한 영향을 받는다.그러나 과당 섭취 능력의 노화 관련 변화는 GLUT5 [10][11][12]발현 속도로 설명되지 않는다.포도당의 동시 존재에서 과당의 흡수는 개선되지만 소르비톨[13]억제된다.GLUT5에 의한 과당 흡수는 장내 유기물을 [14][15]사용하여 조사할 수 있다.

인터랙티브 패스 맵

아래의 유전자, 단백질 및 대사물을 클릭하여 각각의 기사와 연결하세요.[§ 1]

[[파일:
GlycolysisGluconeogenesis_WP534go to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to WikiPathwaysgo to articlego to Entrezgo to article
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
[[
]]
GlycolysisGluconeogenesis_WP534go to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to articlego to WikiPathwaysgo to articlego to Entrezgo to article
alt=용해 및 포도당생성 편집]
당분해 및 글루코네제네시스 편집
  1. ^ 대화형 경로 맵은 WikiPathways에서 편집할 수 있습니다."GlycolysisGluconeogenesis_WP534".

레퍼런스

  1. ^ a b c GRCh38: 앙상블 릴리즈 89: ENSG00000142583 - 앙상블, 2017년 5월
  2. ^ a b c GRCm38: 앙상블 릴리즈 89: ENSMUSG000028976 - 앙상블, 2017년 5월
  3. ^ "Human PubMed Reference:". National Center for Biotechnology Information, U.S. National Library of Medicine.
  4. ^ "Mouse PubMed Reference:". National Center for Biotechnology Information, U.S. National Library of Medicine.
  5. ^ Uldry M, Thorens B (February 2004). "The SLC2 family of facilitated hexose and polyol transporters" (PDF). Pflügers Archiv: European Journal of Physiology. 447 (5): 480–9. doi:10.1007/s00424-003-1085-0. PMID 12750891. S2CID 25539725.
  6. ^ Hundal HS, Darakhshan F, Kristiansen S, Blakemore SJ, Richter EA (1998). "GLUT5 expression and fructose transport in human skeletal muscle". Advances in Experimental Medicine and Biology. 441: 35–45. doi:10.1007/978-1-4899-1928-1_4. ISBN 978-1-4899-1930-4. PMID 9781312.
  7. ^ Douard V, Ferraris RP (August 2008). "Regulation of the fructose transporter GLUT5 in health and disease". American Journal of Physiology. Endocrinology and Metabolism. 295 (2): E227–37. doi:10.1152/ajpendo.90245.2008. PMC 2652499. PMID 18398011.
  8. ^ Barone S, Fussell SL, Singh AK, Lucas F, Xu J, Kim C, Wu X, Yu Y, Amlal H, Seidler U, Zuo J, Soleimani M (February 2009). "Slc2a5 (Glut5) Is Essential for the Absorption of Fructose in the Intestine and Generation of Fructose-induced Hypertension". The Journal of Biological Chemistry. 284 (8): 5056–66. doi:10.1074/jbc.M808128200. PMC 2643499. PMID 19091748.
  9. ^ White PS, Jensen SJ, Rajalingam V, Stairs D, Sulman EP, Maris JM, Biegel JA, Wooster R, Brodeur GM (1998). "Physical mapping of the CA6, ENO1, and SLC2A5 (GLUT5) genes and reassignment of SLC2A5 to 1p36.2". Cytogenetics and Cell Genetics. 81 (1): 60–4. doi:10.1159/000014989. PMID 9691177. S2CID 46770845.
  10. ^ Douard V, Ferraris RP (August 2008). "Regulation of the fructose transporter GLUT5 in health and disease". Am. J. Physiol. Endocrinol. Metab. 295 (2): E227–37. doi:10.1152/ajpendo.90245.2008. PMC 2652499. PMID 18398011.
  11. ^ Litherland GJ, Hajduch E, Gould GW, Hundal HS (June 2004). "Fructose transport and metabolism in adipose tissue of Zucker rats: diminished GLUT5 activity during obesity and insulin resistance" (PDF). Mol. Cell. Biochem. 261 (1–2): 23–33. doi:10.1023/b:mcbi.0000028734.77867.d2. PMID 15362482. S2CID 13029991.
  12. ^ Drozdowski LA, Woudstra TD, Wild GE, Clandinin MT, Thomson AB (October 2004). "Age-associated changes in intestinal fructose uptake are not explained by alterations in the abundance of GLUT5 or GLUT2". J. Nutr. Biochem. 15 (10): 630–7. doi:10.1016/j.jnutbio.2004.06.003. PMID 15542355.
  13. ^ 하인리히 캐스퍼: 에르네룽스메디진과 디테티크 11세Auflage, Elsevier, Urban & Fischer-Verlag, 2009, ISBN 9783437420122, S. 208
  14. ^ Zietek T, Giesbertz P, Ewers M, Reichart F, Weinmüller M, Demir IE, et al. (2020). "Organoids to Study Intestinal Nutrient Transport, Drug Uptake and Metabolism – Update to the Human Model and Expansion of Applications". Frontiers in Bioengineering and Biotechnology. 8: 577656. doi:10.3389/fbioe.2020.577656. ISSN 2296-4185. PMC 7516017. PMID 33015026.
  15. ^ Zietek T, Rath E, Haller D, Daniel H (November 2015). "Intestinal organoids for assessing nutrient transport, sensing and incretin secretion". Scientific Reports. 5 (1): 16831. doi:10.1038/srep16831. PMC 4652176. PMID 26582215.

외부 링크