Sandbox Reserved 718: Difference between revisions

No edit summary
Line 6: Line 6:
<scene name='Sandbox_Reserved_718/Lin28a/1'>TextToBeDisplayed</scene>
<scene name='Sandbox_Reserved_718/Lin28a/1'>TextToBeDisplayed</scene>


== '''Activity''' ==
Lin28 is a conserved cytoplasmic protein with an unusual pairing of RNA‑binding motifs: a cold shock domain and a pair of retroviral‑type CCHC zinc fingers.
Lin28 is a conserved cytoplasmic protein with an unusual pairing of RNA‑binding motifs: a cold shock domain and a pair of retroviral‑type CCHC zinc fingers.


Lin28 is a conserved cytoplasmic protein with an unusual pairing of RNA binding motifs: a cold shock domain and a pair of retroviral type CCHC zinc fingers. It plays a critical role in developmental transition, glucose metabolism, and tumorigenesis. At the molecular level, LIN28 is known to repress maturation of let-7 microRNAs and enhance translation of certain mRNAs. Mammals have two homologs, Lin28a and Lin28b. These two homologs are found from worms to humans (Cho et al., 2012, Balzer and Moss, 2007). Lin28a is highly expressed in embryonic stem cells (ESCs) and was shown as one of the four factors that convert fibroblasts into induced pluripotent stem cells (Yu et al., 2007).
Lin28 is a conserved cytoplasmic protein with an unusual pairing of RNA binding motifs: a cold shock domain and a pair of retroviral type CCHC zinc fingers. It plays a critical role in developmental transition, glucose metabolism, and tumorigenesis. At the molecular level, LIN28 is known to repress maturation of let-7 microRNAs and enhance translation of certain mRNAs. Mammals have two homologs, Lin28a and Lin28b. These two homologs are found from worms to humans (Cho et al., 2012, Balzer and Moss, 2007). Lin28a is highly expressed in embryonic stem cells (ESCs) and was shown as one of the four factors that convert fibroblasts into induced pluripotent stem cells (Yu et al., 2007).


Lin28 is a conserved cytoplasmic protein with an unusual pairing of RNA binding motifs: a cold shock domain and a pair of retroviral type CCHC zinc fingers. It plays a critical role in developmental transition, glucose metabolism, and tumorigenesis. At the molecular level, LIN28 is known to repress maturation of let-7 microRNAs and enhance translation of certain mRNAs. Mammals have two homologs, Lin28a and Lin28b. These two homologs are found from worms to humans (Cho et al., 2012, Balzer and Moss, 2007). Lin28a is highly expressed in embryonic stem cells (ESCs) and was shown as one of the four factors that convert fibroblasts into induced pluripotent stem cells (Yu et al., 2007).
 
== '''Structure''' ==
 


== '''Applications''' ==
== '''Applications''' ==

Proteopedia Page Contributors and Editors (what is this?)Proteopedia Page Contributors and Editors (what is this?)

OCA, Teresa Wiese, Katrin Frohnmüller