Construction and expression of a synthetic gene encoding nonstructural glycoprotein NS1 of dengue 2 virus in Pichia pastoris
ASIAN PACIFIC JOURNAL OF TROPICAL BIOMEDICINE
Authors: Puspasari, Fernita; Putri, Riski Dwimalida; Aisyah; Damayanti, Raden Roro Rika; Yuwita, Anita; Alisjahbana, Bachti; Handali, Sukwan; Ihsanawati; Natalia, Dessy
Abstract
Objectives: To express and characterize NS1 of Indonesian-specific DENV2 virus in Pichia pastoris (P. pastoris). Methods: A codon optimized synthetic gene derived from the DENV-2 NS1 amino acid sequences was synthesized commercially and inserted into the P. pastoris pPICZ alpha A expression vector. The recombinant DENV-2 NS1 protein was purified by Ni-NTA affinity chromatography, and its antigenicity was tested. Results: The recombinant DENV-2 NS1 protein was secreted as a protein with a molecular weight of similar to 45 kDa, and the optimal expression condition was achieved by induction with 2% (v/v) methanol for 72 h. The purified recombinant DENV-2 NS1 protein was able to interact with a monoclonal antibody of NS1 in a commercial rapid test. Conclusions: The resulting recombinant DENV-2 NS1 protein produced in P. pastoris KM71 is a potential candidate for use in the development of a dengue diagnostic kit and vaccine.
Differential cell line susceptibility to the emerging Zika virus: implications for disease pathogenesis, non-vector-borne human transmission and animal reservoirs
EMERGING MICROBES & INFECTIONS
Authors: Chan, Jasper Fuk-Woo; Yip, Cyril Chik-Yan; Tsang, Jessica Oi-Ling; Tee, Kah-Meng; Cai, Jian-Piao; Chik, Kenn Ka-Heng; Zhu, Zheng; Chan, Chris Chung-Sing; Choi, Garnet Kwan-Yue; Sridhar, Siddharth; Zhang, Anna Jinxia; Lu, Gang; Chiu, Kin; Lo, Amy Cheuk-Yin; Tsao, Sai-Wah; Kok, Kin-Hang; Jin, Dong-Yan; Chan, Kwok-Hung; Yuen, Kwok-Yung
Abstract
Zika virus (ZIKV) is unique among human-pathogenic flaviviruses by its association with congenital anomalies and trans-placental and sexual human-to-human transmission. Although the pathogenesis of ZIKV-associated neurological complications has been reported in recent studies, key questions on the pathogenesis of the other clinical manifestations, non-vector-borne transmission and potential animal reservoirs of ZIKV remain unanswered. We systematically characterized the differential cell line susceptibility of 18 human and 15 nonhuman cell lines to two ZIKV isolates (human and primate) and dengue virus type 2 (DENV-2). Productive ZIKV replication (>= 2 log increase in viral load, ZIKV nonstructural protein-1 (NS1) protein expression and cytopathic effects (CPE)) was found in the placental (JEG-3), neuronal (SF268), muscle (RD), retinal (ARPE19), pulmonary (Hep-2 and HFL), colonic (Caco-2), and hepatic (Huh-7) cell lines. These findings helped to explain the trans-placental transmission and other clinical manifestations of ZIKV. Notably, the prostatic (LNCaP), testicular (833KE) and renal (HEK) cell lines showed increased ZIKV load and/or NS1 protein expression without inducing CPE, suggesting their potential roles in sexual transmission with persistent viral replication at these anatomical sites. Comparatively, none of the placental and genital tract cell lines allowed efficient DENV-2 replication. Among the nonhuman cell lines, nonhuman primate (Vero and LLC-MK2), pig (PK-15), rabbit (RK-13), hamster (BHK21) and chicken (DF-1) cell lines supported productive ZIKV replication. These animal species may be important reservoirs and/or potential animal models for ZIKV. The findings in our study help to explain the viral shedding pattern, transmission and pathogenesis of the rapidly disseminating ZIKV, and are useful for optimizing laboratory diagnostics and studies on the pathogenesis and counter-measures of ZIKV.