Co‐expression of human calreticulin significantly improves the production of HIV gp140 and other viral glycoproteins in plants

Коэкспрессия человеческого кальретикулина значительно повышает продукцию HIV gp140 и других вирусных гликопротеинов в растениях
Emmanuel Margolin, Youngjun Oh, Matthew Verbeek, Jason Christopher Delville Naude, Daniel Ponndorf, Yulia Meshcheriakova, Hadrien Peyret, Michiel T. van Diepen, Rosamund Chapman, Ann E. Meyers, George P. Lomonossoff, Nobuyuki Matoba, Anna‐Lise Williamson, Edward P. Rybicki
2020-02-25

HIV gp140Nicotiana benthamianahuman calreticulinplant molecular farmingviral glycoproteins
Plant molecular farming (PMF) is rapidly gaining traction as a viable alternative to the currently accepted paradigm of producing biologics. While the platform is potentially cheaper and more scalable than conventional manufacturing systems, expression yields and appropriate post-translational modifications along the plant secretory pathway remain a challenge for certain proteins. Viral fusion glycoproteins in particular are often expressed at low yields in plants and, in some cases, may not be appropriately processed. Recently, however, transiently or stably engineering the host plant has shown promise as a strategy for producing heterologous proteins with more complex maturation requirements. In this study we investigated the co-expression of a suite of human chaperones to improve the production of a human immunodeficiency virus (HIV) type 1 soluble gp140 vaccine candidate in Nicotiana benthamiana plants. The co-expression of calreticulin (CRT) resulted in a dramatic increase in Env expression and ameliorated the endoplasmic reticulum (ER) stress response - as evidenced by lower transcript abundance of representative stress-responsive genes. The co-expression of CRT similarly improved accumulation of glycoproteins from Epstein-Barr virus (EBV), Rift Valley fever virus (RVFV) and chikungunya virus (CHIKV), suggesting that the endogenous chaperone machinery may impose a bottleneck for their production. We subsequently successfully combined the co-expression of human CRT with the transient expression of human furin, to enable the production of an appropriately cleaved HIV gp140 antigen. These transient plant host engineering strategies are a promising approach for the production of high yields of appropriately processed and cleaved viral glycoproteins.
1
Calreticulin co-expression reduced transcript levels of representative endoplasmic-reticulum stress-responsive genes, indicating alleviated ER stress.
2
Co-expression of human calreticulin dramatically increased HIV-1 soluble gp140 Env accumulation in Nicotiana benthamiana plants.
3
Combining human calreticulin with transient human furin expression enabled production of appropriately cleaved HIV gp140 antigen.
4
Human calreticulin also improved accumulation of glycoproteins from Epstein–Barr virus, Rift Valley fever virus, and chikungunya virus.
5
The results indicate that endogenous plant chaperone capacity can limit viral glycoprotein production, while transient host engineering can improve yield and processing.

HIV-1 soluble gp140 and other viral glycoproteins produced in Nicotiana benthamiana plants

The effects of co-expressing human calreticulin, alone or with human furin, on viral glycoprotein accumulation, ER-stress amelioration, and HIV gp140 processing in plants

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2020-02-25
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Emmanuel Margolin
Youngjun Oh
Matthew Verbeek
Jason Christopher Delville Naude
Daniel Ponndorf
Yulia Meshcheriakova
Hadrien Peyret
Michiel T. van Diepen
Rosamund Chapman
Ann E. Meyers
George P. Lomonossoff
Nobuyuki Matoba
Anna‐Lise Williamson
Edward P. Rybicki
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