Department of Fishery Microbiology, Karnataka Veterinary, Animal and Fisheries Sciences University, College of Fisheries, Mangalore 575 002, India.
Microbiology (Reading). 2011 Jan;157(Pt 1):160-168. doi: 10.1099/mic.0.043596-0. Epub 2010 Sep 30.
The type III secretion system encoded by the Salmonella pathogenicity island 2 (SPI-2) has a central role in the pathogenesis of systemic infections by Salmonella. Sixteen genes (ssaU, ssaB, ssaR, ssaQ, ssaO, ssaS, ssaP, ssaT, sscB, sseF, sseG, sseE, sseD, sseC, ssaD and sscA) of SPI-2 were targeted for PCR amplification in 57 seafood-associated serovars of Salmonella. The sseC gene of SPI-2 was found to be absent in two isolates of Salmonella enterica serovar Weltevreden, SW13 and SW39. Absence of sseC was confirmed by sequencing using flanking primers. SW13 had only 66 bp sequence of the sseC gene and SW39 had 58 bp sequence of this gene. A clinical isolate, S. Weltevreden--SW3, 10:r:z6--was used to construct a deletion mutant for the sseC gene. Significant reduction in the survival of SW3, 10:r:z6 ΔsseC and natural mutants SW13 and SW39 in HeLa cells suggests that sseC has a crucial role in the intracellular survival of S. Weltevreden. Expression of sseC was upregulated during the intracellular phase of both S. enterica serovar Typhimurium and clinical isolate S. Weltevreden SW3, 10:r:z6, suggesting a crucial role for this gene in the survival of S. Weltevreden inside host cells.
SPI-2 编码的 III 型分泌系统在沙门氏菌全身感染的发病机制中起着核心作用。SPI-2 的 16 个基因(ssaU、ssaB、ssaR、ssaQ、ssaO、ssaS、ssaP、ssaT、sscB、sseF、sseG、sseE、sseD、sseC、ssaD 和 sscA)被用于 PCR 扩增 57 种海鲜相关沙门氏菌血清型。SPI-2 的 sseC 基因在两个沙门氏菌肠亚种 Weltevreden 血清型的分离株 SW13 和 SW39 中缺失。使用侧翼引物进行测序证实了 sseC 的缺失。SW13 只有 sseC 基因的 66 bp 序列,SW39 有 58 bp 序列。临床分离株 S. Weltevreden-SW3,10:r:z6-被用于构建 sseC 基因缺失突变体。SW3、10:r:z6 ΔsseC 和自然突变株 SW13 和 SW39 在 HeLa 细胞中的存活能力显著降低,表明 sseC 在 Weltevreden 沙门氏菌的细胞内存活中起着关键作用。sseC 的表达在鼠伤寒沙门氏菌血清型和临床分离株 S. Weltevreden SW3,10:r:z6 的细胞内阶段都被上调,表明该基因在宿主细胞内生存中起着关键作用。