| Peer-Reviewed

Effect of Silencing SLPI Gene Expression on Differentiation of BeWo Cells

Received: 17 April 2013    Accepted:     Published: 2 May 2013
Views:       Downloads:
Abstract

In our previous studies which involved genomic profiling by DD-RTPCR and microarray during forskolin induced differentiation of uninucleated cytotrophoblasts into multinucleated syncytiotrophoblasts using BeWo chorionic carcinoma cells as a model, the expression of one of the transcripts namely, Secretory Leucocyte Protease Inhibitor (SLPI) was found to be very high (10-15 fold) in syncytiotrophoblasts compared to the expression in cytotrophoblasts. SLPI is a protein of 12kDa molecular weight and a variety of activities which include protease inhibition, anti inflammatory and anti microbial activity have been attributed to it. In view of this, an attempt was made to investigate the role of SLPI during differentiation of cytotrophoblasts in to syncytiotrophoblasts. The expression of SLPI in BeWo choriocarcinoma cells was inhibited by use of specific oligos designed. Based on the preliminary study two oligos the use of which resulted in maximum inhibition of expression of SLPI more than 75% by 72hrs as assessed by RT-PCR and Western blot were employed in this study. Inhibition of SLPI expression by siRNA resulted in inhibition of morphological differentiation of BeWo cells. This was also reflected functionally by increase in the protease activity as assessed by gelatin zymography. The observation that the expression of two differentiation markers namely Endoglin and hCG also decreased following silencing suggest a role for SLPI in differentiation of cytotrophoblasts to syncytiotrophoblast. RT-PCR analysis for the proliferation markers Cyclin A2 and PCNA in the SLPI silenced cells revealed an increase in their expression. In contrast analysis for differentiation markers GADD45A, DNA-PK,ADRP, and MAP Kinase revealed a decrease in their expression. These results suggest an important role for SLPI during differentiation of cytotrophoblasts into syncytiotrophoblasts and are of significance in that silencing of a single gene can disrupt this differentiation process and establish the importance of SLPI during differentiation process per se.

Published in Cell Biology (Volume 1, Issue 1)
DOI 10.11648/j.cb.20130101.11
Page(s) 1-8
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Previous article
Keywords

SLPI, siRNA, Cell Differentiation, Cytotrophoblast, Syncytiotrophoblast

References
[1] Lyden TW, Ng AK, Rote NS. Modulation of phosphatidylserine epitope expression by BeWo cells during forskolin treatment. Placenta. 14 (1993) 177-186.
[2] Vogt E, Ng AK, Rote NS. Antiphosphatidylserine antibody removes annexin-V and facilitates the binding of prothrombin at the surface of a choriocarcinoma model of trophoblast differentiation. Am J Obstet Gynecol. 177 (1997) 964-972.
[3] Rote NS, Chang J, Katsuragawa H, Ng AK, Lyden TW, et al. Expression of phosphatidylserine-dependent antigens on the surface of differentiating BeWo human choriocarcinoma cells. Am J Reprod Immunol. 33 (1995) 114-121.
[4] Rote NS, Vogt E, DeVere G, Obringer AR, Ng AK. The role of placental trophoblast in the pathophysiology of the antiphospholipid antibody syndrome. Am J Reprod Immunol. 39 (1998) 125-136.
[5] Lin L, Xu B, Rote NS. Expression of endogenous retrovirus ERV-3 induces differentiation in BeWo, a choriocarcinoma model of human placental trophoblast. Placenta. 20 (1999) 109-118.
[6] Xu B, Lin L, Rote NS. Identification of a stress-induced protein during human trophoblast differentiation by differential display analysis. Biol Reprod. 61 (1999) 681-686.
[7] Garcia-Lloret MI, Morrish DW, Wegmann TG, Honore L, Turner AR, et al. Demonstration of functional cytokine-placental interactions: CSF-1 and GM-CSF stimulate human cytotrophoblast differentiation and peptide hormone secretion. Exp Cell Res. 214 (1994) 46-54.
[8] Yang M, Lei ZM, Rao Ch V. The central role of human chorionic gonadotropin in the formation of human placental syncytium. Endocrinology. 144 (2003) 1108-1120.
[9] Rama S, Petrusz P, Rao AJ. Hormonal regulation of human trophoblast differentiation: a possible role for 17beta-estradiol and GnRH. Mol Cell Endocrinol. 218 (2004) 79-94.
[10] Rama S, Suresh Y, Rao AJ. TGF beta1 induces multiple independent signals to regulate human trophoblastic differentiation: mechanistic insights. Mol Cell Endocrinol. 206 (2003) 123-136.
[11] Neelima PS, Rao AJ. Gene expression profiling during Forskolin induced differentiation of BeWo cells by differential display RT-PCR. Mol Cell Endocrinol. 281 (2008) 37-46.
[12] Thompson RC, Ohlsson K. Isolation, properties, and complete amino acid sequence of human secretory leukocyte protease inhibitor, a potent inhibitor of leukocyte elastase. Proc Natl Acad Sci. 83 (1986) 6692-6696.
[13] Schalkwijk J, Wiedow O, Hirose S. The trappin gene family: proteins defined by an N-terminal transglutaminase substrate domain and a C-terminal four-disulphide core. Biochem J. 340 (1999) Pt 3.: 569-577.
[14] Grutter MG, Fendrich G, Huber R, Bode W. The 2.5 A X-ray crystal structure of the acid-stable proteinase inhibitor from human mucous secretions analysed in its complex with bovine alpha-chymotrypsin. Embo J. 7 (1988) 345-351.
[15] Eisenberg SP, Hale KK, Heimdal P, Thompson RC. Location of the protease-inhibitory region of secretory leukocyte protease inhibitor. J Biol Chem. 265 (1990) 7976-7981.
[16] King AE, Critchley HO, Kelly RW. Presence of secretory leukocyte protease inhibitor in human endometrium and first trimester decidua suggests an antibacterial protective role. Mol Hum Reprod. 6 (2000) 191-196.
[17] Bohm B, Aigner T, Kinne R, Burkhardt H. The serine-protease inhibitor of cartilage matrix is not a chondrocytic gene product. Eur J Biochem. 207 (1992) 773-779.
[18] Ohlsson K, Bjartell A, Lilja H. Secretory leucocyte protease inhibitor in the male genital tract: PSA-induced proteolytic processing in human semen and tissue localization. J Androl. 16 (1995) 64-74.
[19] Xu W, He B, Chiu A, Chadburn A, Shan M, et al. Epithelial cells trigger frontline immunoglobulin class switching through a pathway regulated by the inhibitor SLPI. Nat Immunol. 8 (2007) 294-303.
[20] Tomee JF, Hiemstra PS, Heinzel-Wieland R, Kauffman HF. Antileukoprotease: an endogenous protein in the innate mucosal defense against fungi. J Infect Dis. 176 (1997) 740-747.
[21] McNeely TB, Dealy M, Dripps DJ, Orenstein JM, Eisenberg SP, et al. Secretory leukocyte protease inhibitor: a human saliva protein exhibiting anti-human immunodeficiency virus 1 activity in vitro. J Clin Invest. 96 (1995) 456-464.
[22] Nampoothiri LP, Neelima PS, Rao AJ. Proteomic profiling of forskolin-induced differentiated BeWo cells: an in-vitro model of cytotrophoblast differentiation. Reprod Biomed Online. 14 (2007) 477-487.
[23] Graham CH, Lala PK. Mechanism of control of trophoblast invasion in situ. J Cell Physiol. 148 (1991) 228-234.
[24] Page-McCaw A, Ewald AJ, Werb Z. Matrix metalloproteinases and the regulation of tissue remodelling. Nat Rev Mol Cell Biol. 8 (2007) 221-233.
[25] Ashcroft GS, Lei K, Jin W, Longenecker G, Kulkarni AB, et al. Secretory leukocyte protease inhibitor mediates non-redundant functions necessary for normal wound healing. Nat Med. 6 (2000) 1147-1153.
[26] Salamonsen LA. Role of proteases in implantation. Rev Reprod. 4 (1999) 11-22.
[27] Salamonsen LA, Nie G. Proteases at the endometrial-trophoblast interface: their role in implantation. Rev Endocr Metab Disord. 3 (2002) 133-143.
[28] Roberts RM, Bazer FW. The functions of uterine secretions. J Reprod Fertil. 82 (1988) 875-892.
[29] Badinga L, Michel FJ, Simmen RC. Uterine-associated serine protease inhibitors stimulate deoxyribonucleic acid synthesis in porcine endometrial glandular epithelial cells of pregnancy. Biol Reprod. 61 (1999) 380-387.
[30] Shimoya K, Moriyama A, Ogata I, Nobunaga T, Koyama M, et al. Increased concentrations of secretory leukocyte protease inhibitor in peritoneal fluid of women with endometriosis. Mol Hum Reprod. 6 (2000) 829-834.
[31] Helmig R, Uldbjerg N, Ohlsson K. Secretory leukocyte protease inhibitor in the cervical mucus and in the fetal membranes. Eur J Obstet Gynecol Reprod Biol. 59 (1995) 95-101.
[32] Ness RB. The consequences for human reproduction of a robust inflammatory response. Q Rev Biol. 79 (2004) 383-393.
Cite This Article
  • APA Style

    Neelima P. Sidarthan, Vijayakumar Govindaraj, Mary Nirmala Sarkar, A. J. Rao. (2013). Effect of Silencing SLPI Gene Expression on Differentiation of BeWo Cells. Cell Biology, 1(1), 1-8. https://doi.org/10.11648/j.cb.20130101.11

    Copy | Download

    ACS Style

    Neelima P. Sidarthan; Vijayakumar Govindaraj; Mary Nirmala Sarkar; A. J. Rao. Effect of Silencing SLPI Gene Expression on Differentiation of BeWo Cells. Cell Biol. 2013, 1(1), 1-8. doi: 10.11648/j.cb.20130101.11

    Copy | Download

    AMA Style

    Neelima P. Sidarthan, Vijayakumar Govindaraj, Mary Nirmala Sarkar, A. J. Rao. Effect of Silencing SLPI Gene Expression on Differentiation of BeWo Cells. Cell Biol. 2013;1(1):1-8. doi: 10.11648/j.cb.20130101.11

    Copy | Download

  • @article{10.11648/j.cb.20130101.11,
      author = {Neelima P. Sidarthan and Vijayakumar Govindaraj and Mary Nirmala Sarkar and A. J. Rao.},
      title = {Effect of Silencing SLPI Gene Expression on Differentiation of BeWo Cells},
      journal = {Cell Biology},
      volume = {1},
      number = {1},
      pages = {1-8},
      doi = {10.11648/j.cb.20130101.11},
      url = {https://doi.org/10.11648/j.cb.20130101.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.cb.20130101.11},
      abstract = {In our previous studies which involved genomic profiling by DD-RTPCR and microarray during forskolin induced differentiation of uninucleated cytotrophoblasts into multinucleated syncytiotrophoblasts  using BeWo chorionic carcinoma cells as a model, the expression of one of the transcripts namely, Secretory Leucocyte Protease Inhibitor (SLPI) was found to be very high (10-15 fold)  in syncytiotrophoblasts compared to the expression in cytotrophoblasts.  SLPI is a protein of 12kDa molecular weight and a variety of activities which include protease inhibition, anti inflammatory and anti microbial activity have been attributed to it. In view of this, an attempt was made to investigate the role of SLPI during differentiation of cytotrophoblasts in to syncytiotrophoblasts. The expression of SLPI in BeWo choriocarcinoma cells was inhibited by use of specific oligos designed. Based on the preliminary study two oligos the use of which resulted in maximum inhibition of expression of SLPI more than 75% by 72hrs as assessed by RT-PCR and Western blot were employed in this study. Inhibition of SLPI expression by siRNA resulted in inhibition of morphological differentiation of BeWo cells. This was also reflected functionally by increase in the protease activity as assessed by gelatin zymography.  The observation that the expression of two differentiation markers namely Endoglin and hCG also decreased following silencing suggest a role for SLPI in differentiation of cytotrophoblasts to syncytiotrophoblast.  RT-PCR analysis for the proliferation markers Cyclin A2 and PCNA in the SLPI silenced cells revealed an increase in their expression.  In contrast analysis for differentiation markers GADD45A, DNA-PK,ADRP, and MAP Kinase revealed a decrease in their expression. These results suggest an important role for SLPI during differentiation of cytotrophoblasts into syncytiotrophoblasts and are of significance in that silencing of a single gene can disrupt this differentiation process and establish the importance of SLPI during differentiation process per se.},
     year = {2013}
    }
    

    Copy | Download

  • TY  - JOUR
    T1  - Effect of Silencing SLPI Gene Expression on Differentiation of BeWo Cells
    AU  - Neelima P. Sidarthan
    AU  - Vijayakumar Govindaraj
    AU  - Mary Nirmala Sarkar
    AU  - A. J. Rao.
    Y1  - 2013/05/02
    PY  - 2013
    N1  - https://doi.org/10.11648/j.cb.20130101.11
    DO  - 10.11648/j.cb.20130101.11
    T2  - Cell Biology
    JF  - Cell Biology
    JO  - Cell Biology
    SP  - 1
    EP  - 8
    PB  - Science Publishing Group
    SN  - 2330-0183
    UR  - https://doi.org/10.11648/j.cb.20130101.11
    AB  - In our previous studies which involved genomic profiling by DD-RTPCR and microarray during forskolin induced differentiation of uninucleated cytotrophoblasts into multinucleated syncytiotrophoblasts  using BeWo chorionic carcinoma cells as a model, the expression of one of the transcripts namely, Secretory Leucocyte Protease Inhibitor (SLPI) was found to be very high (10-15 fold)  in syncytiotrophoblasts compared to the expression in cytotrophoblasts.  SLPI is a protein of 12kDa molecular weight and a variety of activities which include protease inhibition, anti inflammatory and anti microbial activity have been attributed to it. In view of this, an attempt was made to investigate the role of SLPI during differentiation of cytotrophoblasts in to syncytiotrophoblasts. The expression of SLPI in BeWo choriocarcinoma cells was inhibited by use of specific oligos designed. Based on the preliminary study two oligos the use of which resulted in maximum inhibition of expression of SLPI more than 75% by 72hrs as assessed by RT-PCR and Western blot were employed in this study. Inhibition of SLPI expression by siRNA resulted in inhibition of morphological differentiation of BeWo cells. This was also reflected functionally by increase in the protease activity as assessed by gelatin zymography.  The observation that the expression of two differentiation markers namely Endoglin and hCG also decreased following silencing suggest a role for SLPI in differentiation of cytotrophoblasts to syncytiotrophoblast.  RT-PCR analysis for the proliferation markers Cyclin A2 and PCNA in the SLPI silenced cells revealed an increase in their expression.  In contrast analysis for differentiation markers GADD45A, DNA-PK,ADRP, and MAP Kinase revealed a decrease in their expression. These results suggest an important role for SLPI during differentiation of cytotrophoblasts into syncytiotrophoblasts and are of significance in that silencing of a single gene can disrupt this differentiation process and establish the importance of SLPI during differentiation process per se.
    VL  - 1
    IS  - 1
    ER  - 

    Copy | Download

Author Information
  • School of Biomedical sciences, University of Queensland, St Lucia, Queensland 4072, Australia

  • Department of Biochemistry, Indian Institute of Science, Bangalore, India

  • Department of Biochemistry, Indian Institute of Science, Bangalore, India

  • Department of Biochemistry, Indian Institute of Science, Bangalore, India

  • Sections