Molecular Evolution of Human Coronavirus 229E in Hong Kong and a Fatal COVID-19 Case Involving Coinfection with a Novel Human Coronavirus 229E Genogroup.

Susanna K P Lau1,2 David C Lung3 Emily Y M Wong4 Kam Leng Aw-Yong4 Antonio C P Wong4 Hayes K H Luk4 Kenneth S M Li4 Joshua Fung4 Tony T Y Chan4 James Y M Tang4 Longchao Zhu4 Cyril C Y Yip4 Sally C Y Wong3 Rodney A Lee5 Owen T Y Tsang6 Kwok-Yung Yuen4,2 Patrick C Y Woo1,2
Affiliations 6 institutions
  1. Department of Microbiology, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong, China [email protected] [email protected].
  2. Carol Yu Centre for Infection, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong, China.
  3. Department of Pathology, Queen Elizabeth Hospital, Hong Kong, China.
  4. Department of Microbiology, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong, China.
  5. Department of Pathology, Pamela Youde Nethersole Eastern Hospital, Hong Kong, China.
  6. Department of Medicine and Geriatrics, Princess Margaret Hospital, Hong Kong, China.

Abstract

Compared to other human coronaviruses, the genetic diversity and evolution of human coronavirus 229E (HCoV-229E) are relatively understudied. We report a fatal case of COVID-19 pneumonia coinfected with HCoV-229E in Hong Kong. Genome sequencing of SARS-CoV-2 and HCoV-229E from a nasopharyngeal sample of the patient showed that the SARS-CoV-2 strain HK13 was most closely related to SARS-CoV-2 type strain Wuhan-Hu-1 (99.99% nucleotide identity), compatible with his recent history of travel to Wuhan. The HCoV-229E strain HK20-42 was most closely related to HCoV-229E strain SC0865 from the United States (99.86% nucleotide identity). To investigate if it may represent a newly emerged HCoV-229E genotype in Hong Kong, we retrieved 41 archived respiratory samples that tested positive for HCoV-229E from 2004 to 2019. Pneumonia and exacerbations of chronic airway diseases were common among infected patients. Complete RdRp, S, and N gene sequencing of the 41 HCoV-229E strains revealed that our contemporary HCoV-229E strains have undergone significant genetic drift with clustering of strains in chronological order. Two novel genogroups were identified, in addition to previously described genogroups 1 to 4, with recent circulating strains including strain HK20-42 belonging to novel genogroup 6. Positive selection was detected in the spike protein and receptor-binding domain, which may be important for viral evolution at the receptor-binding interphase. Molecular dating analysis showed that HCoV-229E shared the most recent common ancestor with bat and camel/alpaca 229E-related viruses at ∼1884, while camel/alpaca viruses had a relatively recent common ancestor at ∼1999. Further studies are required to ascertain the evolutionary origin and path of HCoV-229E.IMPORTANCE Since its first appearance in the 1960s, the genetic diversity and evolution of human coronavirus 229E (HCoV-229E) have been relatively understudied. In this study, we report a fatal case of COVID-19 coinfected with HCoV-229E in Hong Kong. Genome sequencing revealed that our SARS-CoV-2 strain is highly identical to the SARS-CoV-2 strain from Wuhan, compatible with the patient's recent travel history, whereas our HCoV-229E strain in this study is highly identical to a recent strain in the United States. We also retrieved 41 archived HCoV-229E strains from 2004 to 2019 in Hong Kong for sequence analysis. Pneumonia and exacerbations of chronic airway diseases were common diagnoses among the 41 patients. The results showed that HCoV-229E was evolving in chronological order. Two novel genogroups were identified in addition to the four preexisting HCoV-229E genogroups, with recent circulating strains belonging to novel genogroup 6. Molecular clock analysis dated bat-to-human and bat-to-camelid transmission to as early as 1884.

Supporting text Virus Host Location
COVID-19 467 HCoV-229E 4 human coronavirus 1 SARS-CoV-2 550 Adolescent 34 Adult 71 Aged 31 Aged, 80 and over 8 Base Sequence 52 Child 42 Child, Preschool 37 Coinfection 15 Common Cold 1 Coronavirus 229E, Human 4 COVID-19 425 Evolution, Molecular 176 Female 289 Genetic Variation 127 Genome, Viral 317 Hong Kong 21 Humans 1440 Infant 26 Male 224 Middle Aged 60

Evidence records

5 total
Zoonotic Surveillance
2 records · 1 evidence types
Evidence type
2 records
OVE4526
Key finding

HCoV-229E was detected in 41 archived human respiratory samples collected in Hong Kong between 2004 and 2019.

Virus
Host
Location
Supporting text

We retrieved 41 archived respiratory samples that tested positive for HCoV-229E from 2004 to 2019.

Method
viral genome sequencing | RT-PCR screening
Sample type
respiratory samples
Geographic raw
Hong Kong
Country inferred
CHN
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE4529
Key finding

Positive selection in the spike protein and receptor-binding domain of HCoV-229E indicates molecular adaptation at the receptor-binding interface.

Virus
Host
Not specified
Location
Not specified
Supporting text

Positive selection was detected in the spike protein and receptor-binding domain, which may be important for viral evolution at the receptor-binding interphase.

Genes or proteins
spike protein | receptor-binding domain
Mechanism types
receptor binding | host-range expansion
Genomic Evolution
2 records · 1 evidence types
Evidence type
2 records
OVE4528
Key finding

Molecular dating indicated that HCoV-229E shared a common ancestor with bat and camel/alpaca 229E-related viruses around 1884, supporting cross-species evolutionary relationships.

Virus
Host
Location
Not specified
Supporting text

Molecular dating analysis showed that HCoV-229E shared the most recent common ancestor with bat and camel/alpaca 229E-related viruses at ∼1884, while camel/alpaca viruses had a relatively recent common ancestor at ∼1999.

Analysis methods
molecular dating analysis | molecular clock analysis | phylogenetic analysis
OVE4527
Key finding

Phylogenetic analysis of HCoV-229E sequences from Hong Kong revealed chronological genetic drift and two novel genogroups among human strains.

Virus
Host
Not specified
Location
Not specified
Supporting text

Complete RdRp, S, and N gene sequencing of the 41 HCoV-229E strains revealed that our contemporary HCoV-229E strains have undergone significant genetic drift with clustering of strains in chronological order. Two novel genogroups were identified, in addition to previously described genogroups 1 to 4.

Genes or proteins
RdRp | S | N
Analysis methods
phylogenetic analysis | molecular evolution analysis