Staphylococcus aureus is one of the most common pathogens causing keratitis. Surfactant protein D (SP-D) plays a critical role in host defense and innate immunity. In order to investigate the role of SP-D in ocular S. aureus infection, the eyes of wild-type (WT) and SP-D knockout (SP-D KO) C57BL/6 mice were infected with S. aureus (107 CFU/eye) in the presence and absence of cysteine protease inhibitor(E64).Bacterial counts in the ocular surface were examined 3, 6, 12, 24 hrs after infection. Bacterial phagocytosis by neutrophils and bacterial invasion in ocular epithelial cells were evaluated quantitatively. S. aureus-induced ocular injury was determined with corneal fluorescein staining. The results demonstrated that SP-D is expressed in ocular surface epithelium and the lacrimal gland; WT mice had increased clearance of S. aureus from the ocular surface (p<0.05) and reduced ocular injury compared with SP-D KO mice. The protective effects of SP-D include increased bacterial phagocytosis by neutrophils (p<0.05) and decreased bacterial invasion into epithelial cells (p<0.05) in WT mice compared to in SP-D KO mice. In the presence of inhibitor (E64), WT mice showed enhanced bacterial clearance (p<0.05) and reduced ocular injury compared to absent E64 while SP-D KO mice did not. Collectively, we concluded that SP-D protects the ocular surface from S. aureus infection but cysteine protease impairs SP-D function in this murine model, and that cysteine protease inhibitor may be a potential therapeutic agent in S. aureus keratitis.
HIV-1 prevalence in Guangxi, China, has been growing since 1996, when the first case was reported. Over half of HIV-1 positive patients in Guangxi Province were injecting drug users (IDUs), possibly because of the province’s location near drug-trafficking routes. Since a phase II HIV vaccine trial is ongoing there, a current characterization of the subtypes of HIV-1 among IDUs in Guangxi would provide critical information for future HIV vaccine trials, as well as further control and prevention of HIV-1 transmission. Thus, we conducted a molecular epidemiological investigation of HIV-1 samples from 2008–2010 among IDUs in multiple cities in Guangxi Province. Our results, based on the gag/pol fragment, indicated a very high proportion (78.47%) of HIV-1 CRF08_BC recombinants, some CRF01_AE (15.38%) recombinants, and a low proportion of CRF07_BC (6.15%) recombinants among the IDUs. The high proportion of CRF08 HIV-1 strains among recent IDUs matches the vaccine candidate constructs. However, future vaccine development should also incorporate CRF01-targeted vaccine candidates. Distinct Env sequence evolution patterns were observed for CRF08_BC and CRF01_AE, indicating that different local selection pressures have been exerted on these two HIV-1 subtypes. Unique drug-resistant mutations were also detected, and our data indicate that HIV treatment programs should consider pre-existing drug-resistant mutations.
Ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) is a critical protein for photosynthesis. With small subunits, RBCSs catalyze the fixation of CO2 onto ribulose-1,5-bisphosphate (RuBP). However, the gene characteristics of peanut RBCSs, and the relationship between their expression and peanut growth under nitrogen (N)-deficiency conditions are not yet known. This study targeted the impact of sufficient N (5 mmol/L NO3−) and deficient N (0.1 mmol/L NO3−) on peanut seedlings’ growth, physiology, and molecular aspects. Herein, eight RBCS protein encoding genes were identified in the peanut genome, and their characteristics were described. The leaf areas of Yu Hang Hua 1 (YH1) and An Hua 3 (AH3) were reduced significantly after 10 days while “Pu Ke Hua 18” (PK18) and “Luo Hua 4087” (LH4087) had higher N-deficiency adaptations in the initial N-deficiency stage. The Rubisco carboxylation activities of YH1 and PK18 were significantly increased after 5 days of N-deficiency stress while they decreased under 15 days of N-deficiency conditions. Furthermore, the qRT-PCR results showed that the expressions of AhRBCS 1/5 and AhRBCS2/6 had negative relationships with the morpho-physiological traits of peanut under low-N stress. This study provides the biological information of peanut RBCSs and lays a theoretical foundation for N utilization in crop plants.
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