Page 12 - ebook
P. 12

[D. Medicine/Translational Research] D-6



             A SOCS3 Competitor Protein Overcomes Leptin Resistance By


            Activating The JAK/STAT3 Signaling In Hypothalamic Neurons




          Yerim Kang¹, Sukyeong Jeong¹, Sujung Lee¹, Dabin Guk¹, Moonyoung Choi¹, Eunna Chung¹,

                                                     Daewoong Jo¹*

                            ¹Cellivery R&D Institute, Cellivery Therapeutics, Inc., Seoul 03929, Korea




        The main obstacle to treat patients with obesity is inappropriate appetite regulation induced by leptin resistance.

        Therapeuticmolecule Systemic Delivery Technology (TSDT) platform using an advanced macromolecule transduction
        domain  (aMTD),  a  group  of  optimized  CPPs  to  improve  the  cell-permeability  of  cargos  via  direct  penetration,

        provides  a  powerful  delivery  mechanism  for  therapeutic  proteins.  Here,  Cell-Permeable  truncated  SOCS3  SH2
        domain (CP-SD) has been developed by fusing the truncated SH2 domain of human SOCS3 with aMTD and a

        solubilization domain, and its therapeutic potency has been evaluated. As a result, this recombinant protein was
        homogeneous and soluble at concentration of up to 8 μg/μl, and also stable at 37 degrees up to 24 hours. CP-SD

        selectively  bound  to  the  activated  leptin  receptor  and  overcame  leptin  resistance  at  concentration  of  100  nM
        through  competitively  inhibiting  the  interaction  between  leptin  receptor  and  highly  expressed  SOCS3.  In  diet-

        induced obesity (DIO) mice fed high fat diet (60% calories as fat), CP-SD rapidly reduced body weight by 3.7% and
        food intake by 22.2% in 6 days (20 mg/kg, IV, daily injection). These results suggest that CP-SD is a promising

        therapeutic  protein  to  treat  severe  obesity  by  restoring  leptin  sensitivity  and  suppressing  abnormally  elevated
        appetite.
   7   8   9   10   11   12   13   14   15   16   17